Patents Issued in April 18, 2023
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Patent number: 11631857Abstract: A secondary battery includes a positive electrode, a negative electrode, a separator disposed between the positive electrode and the negative electrode, and an electrolyte solution, wherein the positive electrode includes a current collector and a positive electrode active material layer disposed on the current collector, the positive electrode active material layer includes a positive electrode active material and carbon nanotubes, and the electrolyte solution includes a non-aqueous solvent, a lithium salt, and tetravinylsilane.Type: GrantFiled: February 22, 2019Date of Patent: April 18, 2023Inventors: Joo Yul Baek, Young Min Lim, Jun Muk Lim, Sang Hoon Choy, Chul Haeng Lee
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Patent number: 11631858Abstract: A positive electrode material, a positive electrode, and a battery employing the same are provided. The positive electrode material includes an active particle and a modified layer covering the surface of the active particle. The modified layer is a reaction product of a composition. The composition includes an ionic conductive ceramic compound, an organic conductive compound, and a coupling agent. In the disclosure, the ionic conductive ceramic compound is 50-84 parts by weight, the organic conductive compound is 16-50 parts by weight, and the total weight of the ionic conductive ceramic compound and the organic conductive compound is 100 parts by weight. In the disclosure, the weight percentage of the coupling agent is from 0.05 wt % to 10 wt %, based on the total weight of the ionic conductive ceramic compound and the organic conductive compound.Type: GrantFiled: December 9, 2020Date of Patent: April 18, 2023Assignee: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTEInventors: Guan-Lin Lai, Chen-Chung Chen, Yu-Han Li, Jung-Mu Hsu
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Patent number: 11631859Abstract: Disclosed are an anode material for lithium secondary batteries, the anode material including an Si-based anode active material and a film layer formed as a double self-assembled monolayer as the result of an amino trimethoxy silane (ATS) SAM precursor and a fluoro ethylene carbonate (FEC) SAM precursor being sequentially bonded to the surface of the Si-based anode active material, and method of manufacturing the same.Type: GrantFiled: June 2, 2021Date of Patent: April 18, 2023Assignees: HYUNDAI MOTOR COMPANY, KIA CORPORATION, INCHEON NATIONAL UNI. RESEARCH & BUSINESS FDNInventors: Seung Min Oh, Ik Kyu Kim, Yeol Mae Yeo, Yoon Sung Lee, Ji Eun Lee, Sa Heum Kim, Dong Jun Kim, Nam Hyeong Kim, Jun Young Mun, Yeong Don Park, Su Hyun Lee, Jun Hwa Park, Mei Hua Hong
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Patent number: 11631860Abstract: An anode for a lithium-based energy storage device such as a lithium-ion battery is disclosed. The anode includes an electrically conductive current collector comprising an electrically conductive layer and a transition metal oxide layer overlaying the electrically conductive layer. The anode may include a continuous porous lithium storage layer provided over the transition metal oxide layer. The continuous porous lithium storage layer may include at least 40 atomic % silicon. A method of making the anode may include providing an electrically conductive current collector having an electrically conductive layer and a transition metal oxide layer provided over the electrically conductive layer. The transition metal oxide layer may have an average thickness of at least 0.05 ?m. A continuous porous lithium storage layer is deposited over the transition metal oxide layer by PECVD.Type: GrantFiled: February 22, 2022Date of Patent: April 18, 2023Assignee: GRAPHENIX DEVELOPMENT, INC.Inventors: John C. Brewer, Kevin Tanzil, Paul D. Garman, Robert G. Anstey
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Patent number: 11631861Abstract: A negative active material for a rechargeable lithium battery and a rechargeable lithium battery including the same, the negative active material including a Si-carbon composite that includes Si nanoparticles and an amorphous carbon, wherein the negative active material has a sphericity of 0.7 or more, and a BET specific surface area of 10 m2/g or less.Type: GrantFiled: October 30, 2020Date of Patent: April 18, 2023Assignee: SAMSUNG SDI CO., LTD.Inventors: Young-Min Kim, Changsu Shin, Jongmin Won, Dae-Hyeok Lee, Jaemyung Kim, Jaehou Nah
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Patent number: 11631862Abstract: The present disclosure relates to a secondary battery and an electrode plate. The electrode plate includes a current collector, an active material layer, a conductive structure, and a first protective layer. The current collector includes an insulating layer and a conductive layer disposed on the insulating layer. The conductive layer includes a main body portion and a protrusion portion. A surface of the main body portion facing away from the insulating layer is covered by the active material layer, while a surface of the protrusion portion facing away from the insulating layer is uncovered by the active material layer. The conductive structure is welded to the protrusion portion and thus a welded zone is formed. The first protective layer has elasticity, and is disposed on a side of the protrusion portion facing away from the insulating layer and is located between the welded zone and the active material layer.Type: GrantFiled: December 7, 2021Date of Patent: April 18, 2023Assignee: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Yaru Zhou, Qingrui Xue, Zige Zhang, Miao Jiang, Jing Li, Wei Li, Long Wang
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Patent number: 11631863Abstract: A fuel cell catalyst material includes metal catalyst particles formed of a metal material and a carbon-based coating composition at least partially coating at least some of the metal catalyst particles. The carbon-based coating composition includes a carbon network. The carbon-based coating composition is doped with a dopant. The carbon-based coating composition includes a number of defects formed by one or more vacated carbon atoms in the carbon network.Type: GrantFiled: March 27, 2020Date of Patent: April 18, 2023Assignee: Robert Bosch GmbHInventors: Jonathan Mailoa, Georgy Samsonidze, Soo Kim, Mordechai Kornbluth
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Patent number: 11631864Abstract: Disclosed are an electrode including a polymer matrix and a catalyst including metal nanoparticles and a conductive polymer shell and, a method of preparing the same. According to various exemplary embodiments of the present invention, various hybrid nano-composites may be formed by a combination of other conductive polymers than P3HT with metal nanoparticles. For example, the method may include selectively disposing metal nanoparticles to a surface modified conductive polymer including a block copolymer of two or more types of conductive polymers.Type: GrantFiled: December 16, 2021Date of Patent: April 18, 2023Assignees: Hyundai Motor Company, Kia Corporation, Korea Advanced Institute of Science and TechnologyInventors: You Jung Song, Hong Seok Yun, Jin Seong Kim, Bum Joon Kim, Young Kwon Kim
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Patent number: 11631865Abstract: The present invention relates to a transition metal nitride support, a method of manufacturing the same, a metal catalyst and a platinum-alloy catalyst including the transition metal nitride support, and manufacturing methods thereof. The manufactured transition metal support prevents corrosion of the support and aggregation of the platinum catalyst, thereby exhibiting high oxygen reduction catalytic activity. Also, strong metal-support interaction (SMSI) can be stabilized, thus improving the durability of the catalyst. The transition metal support includes large pores uniformly distributed therein, thereby increasing the amount of the catalyst supported and minimizing mass-transfer resistance in a membrane- electrode assembly, increasing the performance of a polymer electrolyte membrane fuel cell. The metal catalyst includes platinum particles loaded on the transition metal nitride support, thus exhibiting superior durability and activity.Type: GrantFiled: December 3, 2019Date of Patent: April 18, 2023Assignees: Hyundai Motor Company, Kia Motors Corporation, Korea Advanced Institute of Science and TechnologyInventors: Jee Youn Hwang, Eun Jik Lee, Ji Hoon Jang, Song I Oh, Jin Woo Lee, Sol Youk, Dong Yoon Woo
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Patent number: 11631866Abstract: Provided is pouch battery including an electrode assembly, and a case in which the electrode assembly is sealed and housed; the electrode assembly including a stacked structure of a sheet cathode, a sheet separator, and a sheet anode; the sheet cathode including a positive electrode active material disposed on a current collector; the sheet anode is thin conductive sheet on which lithium metal reversibly deposits on a surface thereof during discharging; the sheet anode being made of a conductive material other than lithium and having a surface substantially free from lithium metal prior to charging the battery. The pouch battery design is flexible and lightweight and provides high power density, making it a suitable replacement for conventional lithium-ion primary batteries and thermal batteries in many applications. Power can be further increased by the application of external compression. Additives and formation conditions can be tailored for forming a solid-electrolyte interface (SEI).Type: GrantFiled: June 8, 2020Date of Patent: April 18, 2023Assignee: SAFT AMERICAInventors: Thomas Greszler, Saori Tokuoka
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Patent number: 11631867Abstract: A bipolar plate is disposed between a positive electrode and a negative electrode of a redox flow battery. The bipolar plate has, in a surface of the bipolar plate facing at least one of the positive electrode and the negative electrode, a plurality of grooves through which an electrolyte flows and a ridge positioned between the adjacent grooves. The bipolar plate includes rough surfaces which are disposed in at least parts of groove inner surfaces defining the respective grooves and surface roughness of which represented by arithmetic mean roughness Ra is 0.1 ?m or larger.Type: GrantFiled: January 19, 2017Date of Patent: April 18, 2023Assignee: Sumitomo Electric Industries, Ltd.Inventors: Hayato Fujita, Kenji Motoi
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Patent number: 11631868Abstract: A fuel cell assembly, a heat pipe for such a fuel cell assembly, and a fuel cell stack. The fuel cell assembly includes a fuel cell having an MEA structure, and a pair of heat pipe separator plates in physical and thermal contact with a planar surface of the fuel cell. Each heat pipe separator plate includes an external heat transfer fin to dissipate a portion of the heat generated by the fuel cell through exposed outer peripheral edges thereof. Each heat pipe separator plate also includes voids formed in an interior planar surface thereof, to be aligned with voids of other heat pipe separator plates when the fuel cell assembly is arranged in a stack. Upper voids are to define upper interior channels in fluid communication with a portion of the air stream supplied to the cathode. A heat transfer insert is arranged in the upper voids, and includes internal heat transfer fins to dissipate another portion of the heat into the upper interior channels for contact with the air stream.Type: GrantFiled: April 3, 2020Date of Patent: April 18, 2023Assignee: Toyota Motor Engineering and Manufacturing North America, Inc.Inventors: Gaohua Zhu, Tom Shieh, Swetha Minupuri, Evan Fleming, Debasish Banerjee
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Patent number: 11631869Abstract: A flow plate for a humidifier, having flow fields on both mutually opposite flat sides of the flow plate is described. The flow plate proposed here has a multiplicity of through-openings, wherein the through-openings are designed such that a perpendicular projection of the through openings onto a plane oriented parallel to the plane of the flat surface of the flow plate has a non-vanishing area, so that gas passing through the through-openings effects, at least in part, mixing of a gas guided in the flow fields perpendicular to the plane of the flat surface of the flow plate. The through-openings improve the power of the humidifier, thus permitting a lower number of flow plates and therefore a more lightweight and more compact design.Type: GrantFiled: September 22, 2017Date of Patent: April 18, 2023Assignee: REINZ-DICHTUNGS-GMBHInventors: Rainer Glueck, Andre Speidel
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Patent number: 11631870Abstract: Introduced is an fuel cell power net including a fuel cell configured to generate power through a reaction between a fuel gas and an oxidizing gas, a power storage device configured to be charged with power generated by the fuel cell or discharged to supply power, a main line configured to electrically connect the fuel cell and the power storage device to each other; a main relay disposed on the main line so as to break or make an electrical connection between the fuel cell and the power storage device, a bypass line which is branched from the main line, bypasses the main relay, and is connected to the power storage device, a bypass relay disposed on the bypass line so as to break or make an electrical connection of the bypass line, and a controller configured to control the main relay or the bypass relay such that the power stored in the storage device is supplied to the fuel cell while the power generation of the fuel cell is stopped.Type: GrantFiled: February 18, 2022Date of Patent: April 18, 2023Assignees: HYUNDAI MOTOR COMPANY, KIA CORPORATIONInventors: Jong Hyun Lee, Keun Bong Ham
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Patent number: 11631871Abstract: A startup control method for a fuel cell is provided. The method includes calculating available power of a high-voltage battery when a startup of the fuel cell is requested. An air compressor is then driven based on a calculated magnitude of the available power of the high-voltage battery and a low-voltage battery is charged with the power of the high-voltage battery after the driving of the air compressor is completed.Type: GrantFiled: July 30, 2018Date of Patent: April 18, 2023Assignees: Hyundai Motor Company, Kia Motors CorporationInventors: Mi Sun Kim, Dae Jong Kim
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Patent number: 11631872Abstract: Systems and methods for operating an electric energy storage device are described. The systems and methods may generate a state of charge estimate that is based on negative electrode plating. An overall state of charge may be determined from the state of charge estimate that is based on negative electrode plating and a state of charge estimate that is not based on negative electrode plating.Type: GrantFiled: November 16, 2020Date of Patent: April 18, 2023Assignee: ESS TECH, INC.Inventors: Yang Song, Timothy J. McDonald, Thiago Groberg
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Patent number: 11631873Abstract: A method for controlling a fuel cell system having a hydrogen fuel injector/ejector and a control system, includes determining a hydrogen fuel consumption rate associated with a selected power level at steady state, determining a modeled hydrogen fuel flow rate associated with the selected power level and the injector/ejector, determining a modeled effective flow area associated with the injector/ejector, determining a true effective flow area of the injector/ejector, and using the effective flow area to calculate or adjust a command signal, an estimation or an estimation error of at least one of a hydrogen fuel flow rate, an anode leak rate and an anode exhaust valve flow rate.Type: GrantFiled: November 11, 2021Date of Patent: April 18, 2023Assignee: GM Global Technology Operations LLCInventors: Xiaofeng Wang, Manish Sinha, Chad Dubois, Sergio E. Garcia
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Patent number: 11631874Abstract: Disclosed are a control system for a fuel cell including a fuel cell configured to receive a fuel gas and an oxidation gas and generate electric power, a current controller configured to control an output current output from the fuel cell, based on a demanded current of the fuel cell, while maintaining an output voltage output from the fuel cell at a preset voltage or more, and a restriction controller configured to estimate an output current at the preset voltage as a maximum current when the output voltage of the fuel cell drops to become equal to or smaller than the preset voltage, and restrict the output current of the fuel cell to not more than a first restriction current set based on the estimated maximum current, and a control method for a fuel cell.Type: GrantFiled: August 25, 2021Date of Patent: April 18, 2023Assignees: HYUNDAI MOTOR COMPANY, KIA CORPORATIONInventors: Sang Chul Yeom, Jeong Kyu Park, Jae Hwan Choi, Sae Byeok Seung, Hyo Jun Kim, Jae Hoon Jeong, Dong Hoon Kim, Seung Yoon Lee
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Patent number: 11631875Abstract: A fuel oxidation system including an inlet in fluid communication with an interior of a sealed container, and the sealed container is holding permeated gas released from a pressure vessel within the sealed container. Another inlet is in fluid communication with an environment surrounding the sealed container, and the environment includes oxygen gas (O2). An oxidation module is in fluid communication with the inlet and the other inlet, and the oxidation module is combining the permeated gas received by the inlet with the oxygen gas (O2) received by the other inlet to form a preferred substance.Type: GrantFiled: December 19, 2019Date of Patent: April 18, 2023Assignee: Noble Gas Systems, Inc.Inventor: Christopher T. Kondogiani
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Patent number: 11631876Abstract: The present disclosure is directed to compositions and structures of supported metal catalysts for use in applications such as direct methanol fuel cells. Generally, implementations include supported metal catalysts that include Pt active sites that have been modified by addition or co-localization of a second metal such as Cu, Co, Ni, and/or other base metals to lower the inhibiting effect of strongly-adsorbed CO, an intermediate of methanol oxidation. An example aspect of the present disclosure includes catalyst compositions where the exterior metal sites in the supported catalyst include at least two metals: Pt and a competitive binder (e.g., a second metal).Type: GrantFiled: January 22, 2020Date of Patent: April 18, 2023Assignee: University of South CarolinaInventors: John R. Monnier, Gregory L. Tate, Wen Xiong, Benjamin H. Meekins
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Patent number: 11631877Abstract: A method for bonding together two or more acid-doped polybenzimidazole films is provided.Type: GrantFiled: February 28, 2019Date of Patent: April 18, 2023Assignee: JTEC ENERGY, INC.Inventors: Lonnie G. Johnson, Andrew Ashford Knight, Tedric D. Campbell, Malcolm Moses Johnson
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Patent number: 11631878Abstract: Disclosed is a method of manufacturing a solid oxide fuel cell including a multi-layered electrolyte layer using a calendering process. The method for manufacturing a solid oxide fuel cell is a continuous process, thus providing high productivity and maximizing facility investment and processing costs. In addition, the solid oxide fuel cell manufactured by the method includes an anode that is free of interfacial defects and has a uniform packing structure, thereby advantageously greatly improving the production yield and power density. In addition, the solid oxide fuel cell has excellent interfacial bonding strength between respective layers included therein, and includes a multi-layered electrolyte layer in which the secondary phase at the interface is suppressed and which has increased density, thereby advantageously providing excellent output characteristics and long-term stability even at an intermediate operating temperature.Type: GrantFiled: March 25, 2021Date of Patent: April 18, 2023Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Ho Il Ji, Jong Ho Lee, Byung Kook Kim, Ji Won Son, Kyung Joong Yoon, Hyoung Chul Kim, Sang Baek Park, Sung Eun Yang, Jun Seok Kim
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Patent number: 11631879Abstract: The invention relates to a fuel cell module (10) having a plurality of fuel cells forming a fuel cell stack and having an enclosure (14) which surrounds the fuel cell stack. The enclosure (14) includes a bottom assembly and a lid cap assembly (30), wherein the bottom assembly includes a jacket at least partly form-fitted to the stack architecture providing internal alignment functions and a bottom plate in pressure contact with the fuel cell stack, wherein the lid cap assembly (30) comprises a compression plate (32) in pressure contact with the fuel cell stack. The bottom assembly (20) and the lid cap assembly (30) are provided with a progressive locking system providing a range of compression pressures to the fuel cell module (10). Further aspects of the invention relate to a fuel cell system and to a method for producing a fuel cell module (10).Type: GrantFiled: July 15, 2020Date of Patent: April 18, 2023Assignee: FCP Fuel Cell Powertrain GmbHInventors: David B. Harvey, Thomas Melczer
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Patent number: 11631880Abstract: The present disclosure provides a fuel cell stack, a fuel cell system and a method for controlling a fuel cell stack, which can reduce obstruction of reactive gas fluid channels caused by freezing of retained water, while allowing size to be reduced. The fuel cell stack of the disclosure comprises water storage units that are formed between every two adjacent fuel cell unit cells, surrounded by the adjacent separators, the wall members and the gaskets, and that communicate with the reactive gas discharge manifold via the gaps of the wall members. The fuel cell system of the disclosure controls either or both the valve and compressor in a reactive gas supply channel and/or the valve in a reactive gas discharge channel, to cause liquid water retained in the water storage units to be discharged out of the fuel cell stack.Type: GrantFiled: March 19, 2021Date of Patent: April 18, 2023Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Jin Tomatsu, Koro Fujio, Hikaru Tsutsui, Masaya Kobayashi
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Patent number: 11631881Abstract: A battery material stacking device sequentially stacks sheet-like workpieces pertaining to a battery material at high speed. The battery material stacking device is provided with a conveyance mechanism configured to convey workpieces in a predetermined direction, a rotor arranged below the conveyance mechanism to rotate about a predetermined rotation shaft, a plurality of holding portions provided on a peripheral portion of the rotor to hold the workpieces, and a stacking table configured to stack the workpieces thereon. The plurality of holding portions is configured to hold one surface of each of the workpieces which is being conveyed with the other surface of each of the workpieces being held by the conveyance mechanism, then convey the workpieces in accordance with a rotation of the rotor while reversing the workpieces, and stack the workpieces on the stacking table with the other surface facing the stacking table.Type: GrantFiled: April 22, 2019Date of Patent: April 18, 2023Assignee: KYOTO SEISAKUSHO CO., LTD.Inventor: Manabu Yamashita
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Patent number: 11631882Abstract: A method for producing a traction battery of a motor vehicle. A battery housing of the traction battery has a receptacle for receiving a cell module. It is provided that support surfaces for supporting the cell module spaced apart from a bottom of the battery housing are formed on walls of the battery housing delimiting the receptacle compartment, and that a distance between the support surfaces and the base is measured, an amount of heat conducting calculated from the distance is applied to the bottom, and then the cell module is inserted into the receptacle compartment supported on the support surfaces.Type: GrantFiled: December 3, 2020Date of Patent: April 18, 2023Assignee: AUDI AGInventors: Tobias Benker, Michael Frauenhofer, Oliver Schieler, Andreas Buer
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Patent number: 11631884Abstract: A system and a method for forming a composite electrolyte structure are provided. An exemplary composite electrolyte structure includes, at least in part, polymer electrolyte preforms that are bonded into the composite electrolyte structure.Type: GrantFiled: June 2, 2020Date of Patent: April 18, 2023Assignee: Saudi Arabian Oil CompanyInventors: Guodong Zhan, Timothy E. Moellendick, Abdulwahab S Aljohar, Chinthaka Pasan Gooneratne, Jianhui Xu
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Patent number: 11631885Abstract: Provided are a solid electrolyte composition containing an inorganic solid electrolyte having a conductivity of an ion of a metal belonging to Group I or II of the periodic table and a binder having a specific hydrocarbon polymer segment and a specific segment, a solid electrolyte-containing sheet in which the same solid electrolyte composition is used and a manufacturing method therefor, an all-solid state secondary battery and a manufacturing method therefor, a polymer having a specific hydrocarbon polymer segment and a specific segment, and a non-aqueous solvent dispersion thereof.Type: GrantFiled: June 26, 2019Date of Patent: April 18, 2023Assignee: FUJIFILM CorporationInventors: Masaomi Makino, Tomonori Mimura, Yo Kushida
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Patent number: 11631886Abstract: The present disclosure relates to an ionic liquid-based quasi-solid-state electrolyte in a lithium battery and a preparation method thereof. The quasi-solid-state electrolyte is of a porous network structure, which is obtained by a condensation reaction of a lithium salt, ionic liquid, a silane coupling agent and a catalyst, and has a high ionic conductivity. The quasi-solid-state electrolyte can stabilize a stripping/deposition process of lithium metal and inhibit growth of lithium dendrites, and shows a low overpotential and long-term cycle stability in a constant current polarization process. The interface impedance of a lithium metal sheet and the quasi-solid-state electrolyte is low, and is hardly increased with the age of the battery.Type: GrantFiled: December 1, 2019Date of Patent: April 18, 2023Assignee: BEIJING INSTITUTE OF TECHNOLOGYInventors: Renjie Chen, Nan Chen, Feng Wu, Lili Wang, Yujuan Dai
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Patent number: 11631887Abstract: Provided is a sulfide-based solid electrolyte comprising lithium, phosphorus, sulfur, and a halogen, as a novel solid electrolyte capable of suppressing generation of hydrogen sulfide and securing ionic conductivity. The solid electrolyte is characterized by comprising Li7?aPS6?aHaa (wherein Ha represents a halogen, and “a” satisfies 0.2<a?1.8) having an argyrodite-type crystal structure, and Li3PS4, wherein, in an X-ray diffraction (XRD) pattern obtained through measurement by an X-ray diffraction method, the ratio of the peak intensity of a peak appearing at a position in a range of diffraction angle 2?=26.0° to 28.8° derived from Li3PS4, relative to the peak intensity of a peak appearing at a position in a range of diffraction angle 2?=24.9° to 26.3° derived from the argyrodite-type crystal structure, is 0.04 to 0.3.Type: GrantFiled: December 26, 2018Date of Patent: April 18, 2023Assignee: Mitsui Mining & Smelting Co., Ltd.Inventors: Yuki Nakayama, Tsukasa Takahashi, Takahiro Ito, Norihiko Miyashita
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Patent number: 11631888Abstract: A lithium ion conductor includes a compound of Formula 1: Li7-a*?-(b-4)*?-xMa?La3Zr2-?Mb?O12-x-?XxN???Formula 1 wherein in Formula 1, Ma is a cationic element having a valence of a, Mb is a cationic element having a valence of b, and X is an anion having a valence of ?1, wherein, when Ma comprises H, 0???5, otherwise 0???0.75, and wherein 0???1.5, 0?x?1.5, (a*?+(b?4)?+x)>0, and 0<??6.Type: GrantFiled: December 8, 2020Date of Patent: April 18, 2023Assignees: SAMSUNG ELECTRONICS CO., LTD., MASSACHUSETTS INSTITUTE OF TECHNOLOGYInventors: Won Seok Chang, Zachary Hood, Jennifer Rupp, Lincoln Miara
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Patent number: 11631889Abstract: A sulfide glass solid electrolyte sheet can be protected from reaction with moisture by a thin metal layer coating converted to a thin electrochemically functional and protective compound layer. The converted protective compound layer is electrochemically functional in that it allows for through transport of lithium ions.Type: GrantFiled: January 14, 2021Date of Patent: April 18, 2023Assignee: PolyPlus Battery CompanyInventors: Steven J. Visco, Vitaliy Nimon, Yevgeniy S. Nimon, Bruce D. Katz
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Patent number: 11631890Abstract: In solid-state lithium-ion battery cells, electrolyte-infiltrated composite electrode includes an electrolyte component consisting of polymer matrix with ceramic nanoparticles embedded in the matrix to form networking structure of electrolyte. The networking structure establishes effective lithium-ion transport pathway in the electrode. Electrolyte-infiltrated composite electrode sheets and solid electrolyte membranes can be used in all solid-state lithium electrochemical pouch and coin cells. Solid-state lithium-ion battery is fabricated by: (a) providing an anode layer; (b) providing a cathode layer; (c) positioning a ceramic-polymer composite electrolyte membrane between the anode layer and the cathode layer to form a laminar battery assembly; (d) applying pressure to the laminar battery assembly; and (e) heating the laminar battery assembly.Type: GrantFiled: May 6, 2021Date of Patent: April 18, 2023Assignee: Solid Energies Inc.Inventors: Zhigang Lin, Tianyu Meng
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Patent number: 11631891Abstract: The present invention relates to a nitrogen-doped sulfide-based solid electrolyte for all-solid batteries. The a nitrogen-doped sulfide-based solid electrolyte for all-solid batteries includes a compound with an argyrodite-type crystal structure represented by the following Formula 1: LiaPSbNcXd??[Formula 1] wherein 6?a?7, 3<b<6, 0<c?1, 0<d?2, and each X is the same or different halogen atom selected from the group consisting of chlorine (Cl), bromine (Br), and iodine (I).Type: GrantFiled: May 14, 2021Date of Patent: April 18, 2023Assignees: Hyundai Motor Company, Kia Corporation, Industry-University Cooperation Foundation, Hanyang UniversityInventors: Ju Yeong Seong, Yong Jun Jang, Hong Seok Min, Sa Heum Kim, Yong Sub Yoon, Pil Gun Oh, Dong Wook Shin, Chan Hwi Park, Jin Oh Son
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Patent number: 11631892Abstract: The present invention is directed to aqueous solid polymer electrolytes that comprise a lithium salt and battery cells comprising the same. The present invention is also directed to methods of making the electrolytes and methods of using the electrolytes in batteries and other electrochemical technologies.Type: GrantFiled: January 7, 2019Date of Patent: April 18, 2023Assignees: University of Maryland, College Park, The United States of America as Represented by the Secretary of the ArmyInventors: Matthew D. Widstrom, Peter Kofinas, Arthur V. Cresce, Kang Xu
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Patent number: 11631893Abstract: This disclosure provides a battery including a cathode an anode positioned opposite the cathode. The anode includes a hybrid artificial solid-electrolyte interphase (A-SEI) layer encapsulating the anode. The hybrid A-SEI layer includes a first active component, a second active component disposed on the first active component, and a plurality of carbon-containing aggregates interwoven throughout the first and second active components and configured to inhibit growth of Li dendritic structures from the anode towards the cathode. A separator is positioned between the anode and the cathode. The cathode includes a porous carbon-based structure configured to expand in a presence of polysulfide (PS) shuttle within one or more portions of the battery. An electrolyte is dispersed between the anode and the cathode and in contact with both the anode and the cathode. The plurality of carbon-containing aggregates can include a polymer, which includes a cross-linked polymeric network.Type: GrantFiled: September 9, 2020Date of Patent: April 18, 2023Assignee: Lyten, Inc.Inventors: Elena Rogojina, Qianwen Huang, Jerzy Gazda, Jeffrey Bell, Bruce Lanning, Michael W. Stowell, Prashanth Jampani Hanumantha, James McKinney, George Clayton Gibbs
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Patent number: 11631894Abstract: An electrolyte solution containing at least one selected from a compound (I) represented by the following formula (I) and specific compounds (II). The formula (I) is as follows: wherein R11 is a C2-C6 alkyl group. Also disclosed are a secondary battery containing the electrolyte solution and a module including the electrochemical device or the secondary battery.Type: GrantFiled: May 30, 2018Date of Patent: April 18, 2023Assignee: DAIKIN INDUSTRIES, LTD.Inventors: Tomoya Hidaka, Kenzou Takahashi, Masakazu Kinoshita, Shigeaki Yamazaki
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Patent number: 11631895Abstract: The present invention provides an energy device having excellent properties. Also provided is a nonaqueous electrolyte solution containing a compound represented by the following Formula (1), wherein R11, R12 and R13 each independently represent an organic group having 1 to 3 carbon atoms; and R11 and R12, R11 and R13, or R12 and R13 are optionally bound with each other to form a 5-membered ring or a 6-membered ring, with a proviso that a total number of carbon atoms of R11, R12 and R13 is 7 or less.Type: GrantFiled: May 8, 2020Date of Patent: April 18, 2023Assignees: MITSUBISHI CHEMICAL CORPORATION, MU IONIC SOLUTIONS CORPORATIONInventors: Atsushi Watarai, Hiroyuki Tokuda, Akiko Yabe
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Patent number: 11631896Abstract: Discussed is an electrolyte solution for a lithium-sulfur battery including a lithium salt, an organic solvent and an additive, and a lithium-sulfur battery including the same, wherein the additive includes a heterocyclic compound containing at least one double bond, and a heterocycle of the heterocyclic compound comprises an oxygen atom or a sulfur atom.Type: GrantFiled: November 18, 2019Date of Patent: April 18, 2023Assignee: LG ENERGY SOLUTION, LTD.Inventors: Yeyoung Ha, Jaegil Lee
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Patent number: 11631897Abstract: An ionic liquid additive for lithium-ion battery An ionic liquid for adding to an electrolyte of a lithium-ion battery, the ionic liquid comprises a compound with a dual core structure having the general formula (I): wherein each of cationic group X1 and X2 are heterocyclic aromatic and amine.Type: GrantFiled: May 10, 2021Date of Patent: April 18, 2023Assignee: HIGH TECH BATTERY INC.Inventor: Kuei Yung Wang
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Patent number: 11631898Abstract: The present disclosure relates to an electrolyte for a lithium secondary battery, and in particular, to a liquid electrolyte capable of stabilizing lithium metal and suppressing lithium dendrite growth, and a lithium secondary battery including the same. The lithium secondary battery provided with the electrolyte according to the present disclosure has an excellent cycle-dependent capacity retention rate, and accordingly, is effective in improving a battery lifespan property.Type: GrantFiled: December 1, 2016Date of Patent: April 18, 2023Assignee: LG ENERGY SOLUTION, LTD.Inventors: In Tae Park, Doo Kyung Yang, Yun Kyoung Kim
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Patent number: 11631899Abstract: Disclosed is a method of manufacturing a solid electrolyte using water as a solvent. The method includes dissolving a precursor in water to form a slurry, drying the slurry to form granules, pressing the granules to form a pressed solid body, and sintering the pressed solid body to manufacture a solid electrolyte.Type: GrantFiled: March 21, 2019Date of Patent: April 18, 2023Assignee: UNIST (ULSAN NATIONAL INSTITUTE OF SCIENCE AND TECHNOLOGY)Inventors: Youngsik Kim, Wooseok Go, Jin Ho Pyo
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Patent number: 11631900Abstract: A method of producing a lithium-ion battery includes filling at least one cell of the battery with an electrolyte followed directly with a first step of sealing the at least one cell and a second step of applying pulsating compression to the at least one cell during formation charging, the pulsating compression comprising alternating a first time period of applying a first compression force F1 greater than zero and a second time period of applying a second compression force F2, wherein F1>F2, and the formation charging includes a first charge of the battery.Type: GrantFiled: November 16, 2020Date of Patent: April 18, 2023Assignee: Ford Global Technologies, LLCInventors: Kent Snyder, Minghong Liu
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Patent number: 11631901Abstract: A battery is provided. The battery includes an electrode having a flat shape. The electrode is wound and includes a through hole. The through hole is further provided in a wound-back portion of the electrode.Type: GrantFiled: June 6, 2018Date of Patent: April 18, 2023Assignee: Murata Manufacturing Co., Ltd.Inventors: Takaaki Matsui, Hiroto Asano, Moriaki Okuno, Yoshimi Tokuhara, Aya Hashimoto, Taichi Kogure, Naoko Yamakawa
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Patent number: 11631902Abstract: An electrochemical storage cell may comprise first and second electrode sheets wound around a cylindrical core forming a jellyroll structure, the first and second electrode sheets each comprising uncoated conductive edges parallel to end faces of the jellyroll structure, and coated opposing surfaces between the uncoated conductive edges, first and second separator sheets mechanically and electrically separating the coated opposing surfaces of the first and second electrode sheets and mechanically and electrically separating the cylindrical core and the coated opposing surfaces of the first electrode sheet, and slotted cutouts from the uncoated conductive edges, the slotted cutouts angularly co-located relative to the cylindrical core upon forming the jellyroll structure.Type: GrantFiled: July 23, 2019Date of Patent: April 18, 2023Assignee: Lithium Werks Technology BVInventors: David C. Batson, Rex Withers, James E. Dawson
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Patent number: 11631903Abstract: A zinc bromine electrochemical cell comprises an anode-side subassembly, an insulating porous separator, and a cathode-side subassembly. The anode-side subassembly comprises an anode current terminal, an anode current collector, an anode support, an anode sheet, and an anode insulating net. The cathode-side subassembly comprises a cathode insulating mesh, a cathode graphite felt, a cathode sheet, a cathode current collector, and a cathode current terminal. The anode-side subassembly and the cathode-side subassembly are separated by the insulating porous separator.Type: GrantFiled: December 15, 2022Date of Patent: April 18, 2023Assignee: Science Cadets, Inc.Inventor: Saroj Kumar Sahu
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Patent number: 11631904Abstract: A battery system (100) which comprises a metallic battery housing (200) and a metallic component housing (300), wherein at least one battery module (10) having at least one battery cell (12) and a control unit (20) for controlling and monitoring the at least one battery module (10) are arranged in the battery housing (200) and wherein at least one electrical component (80) is arranged in the component housing (300), which electrical component is electrically connected to the at least one battery module (10).Type: GrantFiled: November 9, 2020Date of Patent: April 18, 2023Assignee: Robert Bosch GmbHInventors: Andre Gross, Felix Koehl, Henrik Wolfgang Behm, Holger Stegmueller, Markus Schmitt, Matthias Oechsle, Peter Kohn, Philipp Einsiedel, Robert Kohler, Stefan Baumann, Steve Kroeger, Thomas Dittert
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Patent number: 11631905Abstract: A battery module includes battery cells being arrayed, a cell-monitoring unit configured to monitor each battery cell of the battery module, a battery cell side circuit board electrically connected to the battery cells, and a cell-monitoring unit side circuit board electrically connected to the cell-monitoring unit and the battery cell side circuit board. The battery cell side circuit board and the cell-monitoring unit side circuit board are connected to each other and voltage detection lines on the battery cell side circuit board and a voltage detection lines on the cell-monitoring unit side circuit board are electrically connected. The electric circuits of the voltage detection lines on the battery cell side circuit board are aligned in order of their electric potentials and the electric circuits of the voltage detection lines on the cell-monitoring unit side circuit board are aligned in order of their electric potentials.Type: GrantFiled: June 24, 2019Date of Patent: April 18, 2023Assignee: YAZAKI CORPORATIONInventors: Takao Oota, Yoshiki Aoshima, Kazuya Harakawa
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Patent number: 11631906Abstract: A protection circuit board includes a printed circuit board having a circuit is printed on a board formed from an electrically insulating material and two or more connection components disposed on at least one surface of the printed circuit board and are coupled to an electrode terminal of a secondary battery. Additionally, at least one inspection slot having a shape recessed within the connection component and extending to a portion that the electrode terminal of the secondary battery is coupled thereto and is defined in the connection component. Also, an inspection device and inspection method for inspecting a welded state between a protection circuit board and an electrode terminal among a pair of electrode terminals of a battery pack are provided.Type: GrantFiled: October 30, 2020Date of Patent: April 18, 2023Assignee: LG ENERGY SOLUTION, LTD.Inventors: Jin Oh Yang, Young Su Son, Suk Jin Song, Jae Young Jang
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Patent number: 11631907Abstract: Faster charging of a battery, including: opening a first switch disposed between an input node of the battery and an input node of a load to decouple the input node of the battery from the input node of the load; and charging the battery using a first charging source coupled to the input node of the battery while the load is being powered through the input node of the load via a second charging source having a charge rate slower than the first charging source.Type: GrantFiled: November 2, 2017Date of Patent: April 18, 2023Assignee: QUALCOMM IncorporatedInventors: Eric Mikuteit, Juha Oikarinen, Gene McAllister