The Electrolyte Is Gelled Patents (Class 429/300)
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Patent number: 9640840Abstract: A sodium secondary battery includes a positive electrode, a negative electrode, and a non-aqueous electrolytic solution including a non-aqueous solvent. The non-aqueous solvent includes a fluoro group-containing chain carboxylic acid ester represented by General Formula (1): wherein R1 is an aromatic group, an unsaturated aliphatic group or a saturated aliphatic group; R2, R3 and R4 are each a hydrogen atom, an aromatic group, an unsaturated aliphatic group or a saturated aliphatic group; and at least one of R1, R2, R3 and R4 includes one or more fluoro groups.Type: GrantFiled: November 25, 2014Date of Patent: May 2, 2017Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Takayuki Nakatsutsumi, Nobuhiko Hojo, Hirotetsu Suzuki, Yu Otsuka
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Patent number: 9431689Abstract: There is provided a lithium-air secondary cell having an air electrode, a negative electrode containing metal lithium or a lithium-containing material and a gel-form solid electrolyte, wherein the gel-form solid electrolyte contains a solid electrolyte salt, a solvent, and a specific lipid peptide-type gelator composed.Type: GrantFiled: October 12, 2012Date of Patent: August 30, 2016Assignees: NISSAN CHEMICAL INDUSTRIES, LTD., KYUSHU UNIVERSITYInventors: Tatsumi Ishihara, Shigeru Mitsui, Nobuhide Miyachi
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Patent number: 9397333Abstract: The present invention relates to a method for manufacturing a carbon-sulfur composite, a carbon-sulfur composite manufactured by the method, and a lithium-sulfur battery including the same. In the carbon-sulfur composite manufactured by the method for manufacturing the carbon-sulfur composite, the sulfur is filled up to inside of the carbon balls, and thereby uniformly distributed. Accordingly, the sulfur content is increased, resulting to increase of capacity property, and also electrode structure does not collapse even though the sulfur is changed to a liquid phase while charging or discharging the battery, resulting to showing stable cycle property.Type: GrantFiled: May 31, 2012Date of Patent: July 19, 2016Assignee: INDUSTRY-UNIVERSITY COOPERATION FOUNDATION HANYANG UNIVERSITYInventors: Yang Kook Sun, Hun Gi Jung, Jung Hoon Kim
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Patent number: 9219270Abstract: A flat primary battery capable of enhancing the productivity and a method for manufacturing the same are disclosed. The flat primary battery is a flat alkaline primary battery including a positive electrode mixture, a negative electrode mixture, and an electrolytic solution in a can, wherein the negative electrode mixture includes a zinc powder or a zinc alloy powder and an insulating powder of a non-metal which does not react with an electrolytic solution and which has an average particle diameter of 110 ?m or more, the value of which is from 60% to 140% of an average particle diameter of the zinc powder or zinc alloy powder.Type: GrantFiled: March 11, 2013Date of Patent: December 22, 2015Assignee: SEIKO INSTRUMENTS INC.Inventor: Mitsunori Itoh
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Patent number: 9132389Abstract: The invention provides permeable magnetically responsive filtration membranes that include a filtration membrane polymer base suitable for fluid filtration; hydrophilic polymers conjugated to the surface of the filtration membrane polymer; and magnetic nanoparticles affixed to the ends of a plurality of the hydrophilic polymers, wherein the hydrophilic polymers are movable with respect to the surface of the filtration membrane polymer surface in the presence of an oscillating magnetic field.Type: GrantFiled: August 8, 2012Date of Patent: September 15, 2015Assignee: Colorado State University Research FoundationInventors: Sumith Ranil Wickramasinghe, Xianghong Qian, Heath H. Himstedt, Mathias Ulbricht, Michael J. Semmens
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Patent number: 9029023Abstract: Provided are a multi-layered structure electrolyte including a gel polymer electrolyte on opposite surfaces of a ceramic solid electrolyte, for a lithium ion secondary battery including positive and negative electrodes capable of intercalating/deintercalating lithium ions, and a lithium ion secondary battery including the electrode. The electrolyte includes a gel polymer electrolyte on opposite surfaces of a ceramic solid electrolyte.Type: GrantFiled: September 5, 2012Date of Patent: May 12, 2015Assignee: Samsung Fine Chemicals Co., LtdInventor: Shin Jung Choi
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Patent number: 9023528Abstract: The invention is directed in a first aspect to a sulfur-carbon composite material comprising: (i) a bimodal porous carbon component containing therein a first mode of pores which are mesopores, and a second mode of pores which are micropores; and (ii) elemental sulfur contained in at least a portion of said micropores. The invention is also directed to the aforesaid sulfur-carbon composite as a layer on a current collector material; a lithium ion battery containing the sulfur-carbon composite in a cathode therein; as well as a method for preparing the sulfur-composite material.Type: GrantFiled: September 2, 2010Date of Patent: May 5, 2015Assignee: UT-Battelle, LLCInventors: Chengdu Liang, Nancy J. Dudney, Jane Y. Howe
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Publication number: 20150118535Abstract: Metal-sulfur batteries, such as lithium-sulfur batteries, are prepared using one or more organosulfur species such as organic polysulfides and organic polythiolates as part of the liquid or gel electrolyte solution, as part of the cathode, and/or as part of a functionalized porous polymer providing an intermediate separator element.Type: ApplicationFiled: April 9, 2013Publication date: April 30, 2015Applicant: Arkema Inc.Inventors: Gary S. Smith, Lijuan Wang
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Patent number: 9017864Abstract: Provided is a secondary battery exhibiting excellent durability. Also disclosed is an electrolyte possessing a porous particle, an ionic liquid and a supporting electrolyte salt, wherein the electrolyte has a dynamic elastic modulus of at least 105 Pa.Type: GrantFiled: March 22, 2010Date of Patent: April 28, 2015Assignee: Konica Minolta Holdings, Inc.Inventors: Akiyoshi Kimura, Emiko Mikoshiba
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Patent number: 8993175Abstract: A polymer electrolyte including: a lithium salt; an organic solvent; a fluorine compound; and a polymer of a monomer represented by Formula 1 below. H2C?C—(OR)n—OCH?CH2??Formula 1 In Formula 1, R is a C2-C10 alkylene group, and n is in a range of about 1 to about 1000.Type: GrantFiled: November 10, 2009Date of Patent: March 31, 2015Assignee: Samsung Electronics Co., Ltd.Inventors: Seung-sik Hwang, Han-su Kim, Jae-man Choi, Moon-seok Kwon
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Patent number: 8986893Abstract: Disclosed is a battery including: a positive electrode; a negative electrode; and an electrolyte including a fluidic electrolyte in which an electrolytic solution containing a solvent and an electrolyte salt is present while maintaining fluidity, and a non-fluidic electrolyte in which an electrolytic solution containing a solvent and an electrolyte salt is supported by a polymeric material.Type: GrantFiled: January 23, 2013Date of Patent: March 24, 2015Assignee: Sony CorporationInventors: Ichiro Yamada, Tomoyuki Shiratsuchi, Toru Odani
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Publication number: 20150064575Abstract: A rechargeable lithium-selenium cell comprising a cathode having a cathode active material selected from Se or SexSy (x/y ratio=0.01 to 100), an anode having an anode active material, a porous separator electronically separating the anode and the cathode, a non-flammable quasi-solid electrolyte in contact with the cathode and the anode, wherein the electrolyte contains a lithium salt dissolved in a first organic liquid solvent with a lithium salt concentration sufficiently high (at least 2.0 M, more preferably >3.0 M) so that the electrolyte exhibits a vapor pressure less than 0.01 kPa when measured at 20° C., a flash point at least 20 degrees Celsius higher than the flash point of the first organic liquid solvent alone, a flash point higher than 150° C., or no flash point. This battery cell is non-flammable and safe, has a long cycle life, high capacity, and high energy density.Type: ApplicationFiled: September 3, 2013Publication date: March 5, 2015Inventors: Hui He, Bor Z. Jang, Yanbo Wang, Aruna Zhamu
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Publication number: 20150064574Abstract: A non-flammable quasi-solid electrolyte and a rechargeable non-lithium alkali metal cell containing this electrolyte. The electrolyte comprises an alkali metal salt dissolved in an organic liquid solvent with a concentration higher than 2.5 M (preferably >3.5 M) or a molecular ratio greater than 0.2 (preferably >0.3), wherein the alkali metal is selected from Na, K, a combination of Na and K, or a combination of Na and/or K with Li. The alkali metal salt concentration is sufficiently high so that the electrolyte exhibits a vapor pressure <0.01 kPa when measured at 20° C., a vapor pressure <60% of the vapor pressure of thet organic solvent when measured alone, a flash point at least 20 degrees Celsius higher than a flash point of the organic liquid solvent when measured alone, a flash point higher than 150° C., or no detectable flash point.Type: ApplicationFiled: August 30, 2013Publication date: March 5, 2015Inventors: Hui He, Bor Z. Jang, Yanbo Wang, Aruna Zhamu
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Publication number: 20150044572Abstract: According to the invention there is provided a structural metallic rechargeable battery and a method of producing same. The battery uses one of an acid, alkaline or Li-ion chemistry and the battery has an anode structure, a cathode structure, each of which comprise a conductive foam which contains the active electrochemical reagents, and a structural separator which separates the conductive foams of anode from the cathode respectively. The anode structure and the cathode structure are each formed from a metal sheet or foil.Type: ApplicationFiled: February 26, 2013Publication date: February 12, 2015Applicant: BAE SYSTEMS plcInventors: Martyn John Hucker, Michael Dunleavy, Sajad Haq, Amy Elizabeth Dyke
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Patent number: 8940443Abstract: An electrolyte comprising an organic solvent, a lithium salt, and a polymer additive comprised of repeating vinyl units joined to one or more heterocyclic amine moieties is described. The heterocyclic amine contains five to ten ring atoms, inclusive. An electrochemical cell is also disclosed. The preferred cell comprises a negative electrode which intercalates with lithium, a positive electrode comprising an electrode active material which intercalates with lithium, and the electrolyte of the present invention activating the negative and the positive electrodes.Type: GrantFiled: November 14, 2008Date of Patent: January 27, 2015Assignee: Greatbatch Ltd.Inventor: Chi-Kyun Park
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Patent number: 8936870Abstract: Electrode structures, and more specifically, electrode structures for use in electrochemical cells, are provided. The electrode structures described herein may include one or more protective layers. In one set of embodiments, a protective layer may be formed by exposing a lithium metal surface to a plasma comprising ions of a gas to form a ceramic layer on top of the lithium metal. The ceramic layer may be highly conductive to lithium ions and may protect the underlying lithium metal surface from reaction with components in the electrolyte. In some cases, the ions may be nitrogen ions and a lithium nitride layer may be formed on the lithium metal surface. In other embodiments, the protective layer may be formed by converting lithium to lithium nitride at high pressures. Other methods for forming protective layers are also provided.Type: GrantFiled: October 4, 2012Date of Patent: January 20, 2015Assignee: Sion Power CorporationInventors: John D. Affinito, Gregory K. Lowe
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Patent number: 8928966Abstract: An electrochromic device including a first substantially transparent substrate having an electrically conductive material associated therewith; a second substrate having an electrically conductive material associated therewith; and an electrochromic medium contained within a chamber positioned between the first and second substrates which includes: at least one solvent; at least one anodic electroactive material; at least one cathodic electroactive material; wherein at least one of the anodic and cathodic electroactive materials is electrochromic; and a creep resistant crosslinked polyelectrolyte gel matrix.Type: GrantFiled: August 7, 2013Date of Patent: January 6, 2015Assignee: Gentex CorporationInventors: Leroy J. Kloeppner, Punam Giri, Rongguang Lin, David A. Theiste
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Patent number: 8900483Abstract: Disclosed is a polymer electrolyte composition, a gel-type polymer electrolyte obtained by mixing the same at normal temperature, and a dye-sensitized solar cell containing the electrolyte. Since the poly(alkylene carbonate)-based polymer is included, a crosslinking process by radiation of heat or UV is not required when the polymer electrolyte is manufactured, such that a manufacturing process is simple. Accordingly, the polymer electrolyte is useful for mass production of a solar cell and maintained in a uniform state without a phase separation between two components due to excellent affinity between the polymer and the organic solvent included in the electrolyte, and has excellent electrode-electrolyte interface property in the solar cell due to an adhesive property of the gelled polymer electrolyte.Type: GrantFiled: March 27, 2012Date of Patent: December 2, 2014Assignees: SK Innovation Co., Ltd., SK Global Chemical Co., Ltd.Inventors: Yonggyu Han, Sujith Sudevan, MyungAhn Ok, Jisu Jeong, SungJae Na, KwangJin Chung, Dong-Won Kim, YeonJeong Choi
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Patent number: 8895189Abstract: A surface-mediated cell (SMC) comprising: (a) a cathode comprising a carbon-based cathode active material having a surface area to capture or store lithium thereon; (b) an anode comprising an anode current collector alone, or combined anode current collector and anode active material; (c) a porous separator disposed between the anode and the cathode; (d) a lithium-containing electrolyte, wherein the anode and/or cathode active material has a specific surface area no less than 100 m2/g in direct physical contact with the electrolyte to receive lithium ions therefrom or to provide lithium ions thereto; and (e) a lithium source disposed in at least one of the two electrodes when the cell is made, and the cell has an open-circuit voltage (OCV) of at least 0.8 volts; wherein the cell operates between a lower voltage limit lower than the OCV and an upper limit of between 3.8 and 4.5 volts.Type: GrantFiled: February 3, 2012Date of Patent: November 25, 2014Assignee: Nanotek Instruments, Inc.Inventors: Aruna Zhamu, Guorong Chen, Xiqing Wang, Bor Z. Jang, Yanbo Wang, Qing Fang
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Patent number: 8889301Abstract: Nanostructured gel polymer electrolytes that have both high ionic conductivity and high mechanical strength are disclosed. The electrolytes have at least two domains—one domain contains an ionically-conductive gel polymer and the other domain contains a rigid polymer that provides structure for the electrolyte. The domains are formed by block copolymers. The first block provides a polymer matrix that may or may not be conductive on by itself, but that can soak up a liquid electrolyte, thereby making a gel. An exemplary nanostructured gel polymer electrolyte has an ionic conductivity of at least 1×10?4 S cm?1 at 25° C.Type: GrantFiled: January 16, 2009Date of Patent: November 18, 2014Assignee: Seeo, Inc.Inventors: Nitash Pervez Balsara, Hany Basam Eitouni, Ilan Gur, Mohit Singh, William Hudson
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Patent number: 8871390Abstract: Disclosed are gel electrolytes comprising a polymer, which is polyacrylonitrile (PAN) and polyethylene oxide (PEO); a lithium salt; and a solvent, which is a carbonate solvent, a lactone solvent, or mixtures thereof.Type: GrantFiled: August 27, 2010Date of Patent: October 28, 2014Assignee: Indian Institute of Technology BombayInventors: Ramamurthy Balaji, Ajit R. Kulkarni, Raman S. Srinivasa
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Publication number: 20140315096Abstract: In some embodiments, the present disclosure pertains to energy storage compositions that comprise a clay and an ionic liquid. In some embodiments, the clay is a bentonite clay and the ionic liquid is a room temperature ionic liquid (RTIL). In some embodiments, the clay and the ionic liquid are present in the energy storage compositions of the present disclosure in a weight ratio of 1:1. In some embodiments, the ionic liquid further comprises a lithium-containing salt that is dissolved in the ionic liquid. In some embodiments, the energy storage compositions of the present disclosure further comprise a thermoplastic polymer, such as polyurethane. In some embodiments, the thermoplastic polymer constitutes about 10% by weight of the energy storage composition. In some embodiments, the energy storage compositions of the present disclosure are associated with components of energy storage devices, such as electrodes and separators.Type: ApplicationFiled: February 26, 2014Publication date: October 23, 2014Applicants: Universidade Federal de Minas Gerais, William Marsh Rice UniversityInventors: Raquel Silveira Borges, Kaushik Kalaga, Marco Tulio Fonseca Rodrigues, Hemtej Gullapalli, Leela Mohana Reddy Arava, Kaushik Balakrishnan, Glaura Goulart Silva, Pulickel M. Ajayan
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Publication number: 20140315097Abstract: Embodiments described herein relate generally to devices, systems and methods of producing high energy density batteries having a semi-solid cathode that is thicker than the anode. An electrochemical cell can include a positive electrode current collector, a negative electrode current collector and an ion-permeable membrane disposed between the positive electrode current collector and the negative electrode current collector. The ion-permeable membrane is spaced a first distance from the positive electrode current collector and at least partially defines a positive electroactive zone. The ion-permeable membrane is spaced a second distance from the negative electrode current collector and at least partially defines a negative electroactive zone. The second distance is less than the first distance.Type: ApplicationFiled: March 10, 2014Publication date: October 23, 2014Applicant: 24M Technologies, Inc.Inventors: Taison TAN, Yet-Ming CHIANG, Naoki OTA, Throop WILDER, Mihai DUDUTA
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Patent number: 8859143Abstract: A surface-enabled, metal ion-exchanging battery device comprising a cathode, an anode, a porous separator, and a metal ion-containing electrolyte, wherein the metal ion is selected from (A) non-Li alkali metals; (B) alkaline-earth metals; (C) transition metals; (D) other metals such as aluminum (Al); or (E) a combination thereof; and wherein at least one of the electrodes contains therein a metal ion source prior to the first charge or discharge cycle of the device and at least the cathode comprises a functional material or nano-structured material having a metal ion-capturing functional group or metal ion-storing surface in direct contact with said electrolyte, and wherein the operation of the battery device does not involve the introduction of oxygen from outside the device and does not involve the formation of a metal oxide, metal sulfide, metal selenide, metal telluride, metal hydroxide, or metal-halogen compound.Type: GrantFiled: January 3, 2011Date of Patent: October 14, 2014Assignee: Nanotek Instruments, Inc.Inventors: Aruna Zhamu, ChenGuang Liu, David Neff, Bor Z. Jang, Zhenning Yu
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Patent number: 8852813Abstract: A non-aqueous electrolyte composition, useful in batteries, capacitors and the like, said electrolyte composition comprising an electrolyte support salt, a non-aqueous electrolyte carrier, and a polycyclic aromatic amine, e.g., a naphthyl amine.Type: GrantFiled: July 17, 2012Date of Patent: October 7, 2014Assignee: Chemtura CorporationInventors: Venkat Madabusi, Gerard Mulqueen
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Patent number: 8828611Abstract: Disclosed is a non-aqueous electrolyte comprising: a first acrylate compound having one or two acryl groups; a second acrylate compound having three or more acryl groups; an electrolyte salt; and an organic solvent. Also, disclosed is an electrode comprising a coating layer formed partially or totally on a surface thereof, the coating layer comprising: (i) a reduced form of a first acrylate compound having one or two acryl groups; and (ii) a reduced form of a second acrylate compound having three or more acryl groups. Further, disclosed in an electrochemical device comprising a cathode, an anode, a separator and a non-aqueous electrolyte, wherein (i) the non-aqueous electrolyte is the above non-aqueous electrolyte; and/or (ii) the cathode and/or the anode is the above electrode.Type: GrantFiled: September 19, 2007Date of Patent: September 9, 2014Assignee: LG Chem, Ltd.Inventors: Su-Jin Yoon, Jeong-Ju Cho, Ho-Chun Lee
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Patent number: 8828609Abstract: The invention relates to a method for manufacturing an electrochemical cell comprising an anode and a cathode separated by a separator and a gel electrolyte. The method comprises the steps of assembling the electrodes and the separator, and injecting a liquid electrolyte composition between the electrodes, the liquid electrolyte composition comprising a polymer, an aprotic liquid solvent and a lithium salt, wherein the polymer in the liquid electrolyte composition has functional groups capable of polymerizing via cationic polymerization, and the cell is submitted to an electrochemical cycling comprising a charging step and a discharging step.Type: GrantFiled: March 5, 2009Date of Patent: September 9, 2014Assignees: Hydro-Quebec, Dai-Ichi Kogyo Seiyaku Co., Ltd.Inventors: Karim Zaghib, Manabu Kikuta, Martin Dontigny, Abdelbast Guerfi, Michiyuki Kono
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Patent number: 8828579Abstract: The invention provides a battery, which can improve battery characteristics such as high temperature storage characteristics. The battery comprises a battery device, wherein a cathode and an anode are wound with a separator in between. The anode contains an anode material capable of inserting and extracting Li as an anode active material. An electrolytic solution is impregnated in the separator. The electrolytic solution contains a solvent, and an electrolyte salt such as Li[B(CF3)4] dissolved in the solvent, which is expressed by a chemical formula of Li[B(RF1)(RF2)(RF3)RF4]RF 1, RF 2, RF 3, and RF 4 represent a perfluoro alkyl group whose number of fluorine or carbon is from 1 to 12, respectively. Consequently, high temperature storage characteristics are improved.Type: GrantFiled: March 30, 2004Date of Patent: September 9, 2014Assignee: Sony CorporationInventors: Tadahiko Kubota, Momoe Adachi, Shigeru Fujita
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Publication number: 20140220450Abstract: An electrolyte for use in electrochemical cells is provided. One type of non-aqueous Magnesium electrolyte comprises: at least one organic solvent; at least one electrolytically active, soluble, inorganic Magnesium salt complex represented by the formula: MgnZX3+(2*n), in which Z is selected from a group consisting of aluminum, boron, phosphorus, titanium, iron, and antimony; X is a halogen and n=1-5. The properties of the electrolyte include high conductivity, high Coulombic efficiency, and an electrochemical window that can exceed 3.5 V vs. Mg/Mg+2 and total water content of <200 ppm. The use of this electrolyte promotes the electrochemical deposition and dissolution of Mg from the negative electrode without the use of any additive. Other Mg-containing electrolyte systems that are expected to be suitable for use in secondary batteries are also described. Rechargeable, high energy density Magnesium cells containing a cathode, an Mg metal anode, and an electrolyte are also disclosed.Type: ApplicationFiled: December 30, 2013Publication date: August 7, 2014Applicant: PELLION TECHNOLOGIES, INC.Inventors: Robert E. Jilek, David Eaglesham, Robert Ellis Doe, Andrew Gmitter
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Publication number: 20140205909Abstract: The purpose of the present invention is to provide a zinc negative electrode mixture for forming negative electrodes of safe and economic batteries exhibiting excellent battery performance; and a gel electrolyte or a negative electrode mixture which can be suitably used for forming a storage battery exhibiting excellent battery performance such as a high cycle characteristic, rate characteristic, and coulombic efficiency while suppressing change in form, such as shape change and dendrite, and passivation of the electrode active material. Another purpose of the present invention is to provide a battery including the zinc negative electrode mixture or the gel electrolyte. (1) The zinc negative electrode mixture contains a zinc-containing compound and a conductive auxiliary agent. The zinc-containing compound and/or the conductive auxiliary agent contain(s) particles having an average particle size of 1000 ?m or smaller and/or particles having an aspect ratio (vertical/lateral) of 1.1 or higher.Type: ApplicationFiled: August 22, 2012Publication date: July 24, 2014Applicant: NIPPON SHOKUBAI CO., LTD.Inventors: Koji Yonehara, Hironobu Ono, Hiroko Harada, Yasuyuki Takazawa
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Publication number: 20140186716Abstract: A protected active metal electrode and a device with the electrode are provided. The protected active metal electrode includes an active metal substrate and a protection layer on a surface of the active metal substrate. The protection layer at least includes a metal thin film covering the surface of the active metal substrate and an electrically-conductive thin film covering a surface of the metal thin film. A material of the metal thin film is Ti, V, Cr, Zr, Nb, Mo, Hf, Ta, or W. A material of the electrically-conductive thin film is selected from nitride of a metal in the metal thin film, carbide of a metal in the metal thin film, a diamond-like carbon (DLC), and a combination thereof.Type: ApplicationFiled: December 25, 2013Publication date: July 3, 2014Applicant: Industrial Technology Research InstituteInventors: Jin-Bao Wu, Li-Duan Tsai, Jia-Jen Chang, Ming-Sheng Leu, Jenn-Yeu Hwang, Chun-Lung Li
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Patent number: 8765309Abstract: Disclosed is an electrochemical device comprising a pair of electrodes and provided therebetween, a gelled nonaqueous electrolyte composition containing an electrolyte and a gelling agent having two or more amide groups in the chemical structure.Type: GrantFiled: December 7, 2010Date of Patent: July 1, 2014Assignee: Konica Minolta Holdings, Inc.Inventor: Tomoko Takeyama
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Patent number: 8765295Abstract: The electrolyte includes one or more salts and a silane. The silane has a silicon linked to one or more first substituents that each include a poly(alkylene oxide) moiety or a cyclic carbonate moiety. The silane can be linked to four of the first substituents. Alternately, the silane can be linked to the one or more first substituents and one or more second substituents that each exclude both a poly(alkylene oxide) moiety and a cyclic carbonate moiety.Type: GrantFiled: December 12, 2011Date of Patent: July 1, 2014Inventors: Robert C. West, Khalil Amine, Zhengcheng Zhang, Qingzheng Wang, Nicholas A. A. Rossi, Sang Young Yoon, Hiroshi Nakahara
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Publication number: 20140162133Abstract: A high capacity lead acid battery includes a hybrid electrolyte system and a complex grid system. The hybrid electrolyte system includes an acid gel and adsorbed glass mat. The complex grid system includes a normal grid, a sub-grid and a basement.Type: ApplicationFiled: December 11, 2013Publication date: June 12, 2014Inventor: Xiaogang Wang
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Patent number: 8735001Abstract: A gel battery may be fabricated from a gel anode material and a gel cathode material. The battery may further comprise a gel electrolyte material. The gel materials may be in the form of thin films. A gel battery may be formed by contacting at least a portion of a gel anode with at least a portion of a gel electrolyte, and at least a portion of a gel cathode may also be in contact with at least a portion of the gel electrolyte. A battery formed by gel films may also be coated with a material. The gel battery, its anode, cathode, and electrolyte materials may all be non-toxic for an application to an animal.Type: GrantFiled: April 9, 2012Date of Patent: May 27, 2014Assignee: Empire Technology Development LLCInventor: Glenn Godden
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Publication number: 20140093783Abstract: Lithium-ion electrochemical cells are provided that include a positive electrode that includes a lithium metal oxide or a lithium metal phosphate, a negative electrode capable of intercalating or alloying with lithium, and an electrolyte that includes an additive. The additive includes a multifunctional anion that has the formula, X—SO2—Rf?—SO2—Y, wherein X and Y are, independently, either O— or RfSO2N—, Rf is a straight or branched fluoroalkyl moiety having from 1 to 6 carbon atoms, and can, optionally, contain one or more in-chain heteroatoms, wherein Rf? is a straight or branched chain or cyclic fluoroalkylene having from 1 to 10 carbon atoms and can, optionally, contain one or more in-chain heteroatoms, and wherein both Rf and Rf? have a maximum of 20% non-fluorine substituents. The provided additives can improve the performance, hydrolytic stability, and thermal stability of the provided electrochemical cells.Type: ApplicationFiled: May 30, 2012Publication date: April 3, 2014Applicant: 3M Innovative Properties CompanyInventors: William M. Lamanna, Ang Xiao, Matthew J. Triemert, Phat T. Pham
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Publication number: 20140087238Abstract: A battery electrode assembly comprises a porous electrode plate having a plurality of large and small pores, a pore insert within a plurality of pores, the pore insert maintaining an electrolyte in the pores substantially throughout a discharge/charge cycle. The pore insert may be a gelled electrolyte. The pore insert may be a particulate material. The electrodes may be used in a battery having cells with opposing positive and negative tabs connected in series by an intercell connector.Type: ApplicationFiled: February 23, 2012Publication date: March 27, 2014Applicant: Firefly International Energy Group, Inc.Inventors: Kurtis C. Kelley, Mukesh Bhandari, Mathew Stone
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Patent number: 8673503Abstract: Disclosed are gel electrolytes comprising a polymer, which is a cross-linked polyurethane prepared from a poly(alkyleneoxide) triol and a diisocyanate compound; a lithium salt; and a solvent, which is a carbonate solvent, a lactone solvent, or mixtures thereof.Type: GrantFiled: June 4, 2010Date of Patent: March 18, 2014Assignee: Indian Institute of Technology BombayInventors: Ramamurthy Balaji, Ajit R. Kulkarni, Raman S. Srinivasa
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Publication number: 20140072879Abstract: Disclosed is an electrode material comprising a phthalocyanine compound encapsulated by a protective material, preferably in a core-shell structure with a phthalocyanine compound core and a protective material shell. Also disclosed is a rechargeable lithium cell comprising: (a) an anode; (b) a cathode comprising an encapsulated or protected phthalocyanine compound as a cathode active material; and (c) a porous separator disposed between the anode and the cathode and/or an electrolyte in ionic contact with the anode and the cathode. This secondary cell exhibits a long cycle life, the best cathode specific capacity, and best cell-level specific energy of all rechargeable lithium-ion cells ever reported.Type: ApplicationFiled: September 10, 2012Publication date: March 13, 2014Inventors: Guorong Chen, Bor Z. Jang, Aruna Zhamu
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Patent number: 8647779Abstract: A nonaqueous electrolyte composition includes: a nonaqueous solvent; an electrolyte salt; a matrix resin; a filler; and a surfactant.Type: GrantFiled: November 29, 2012Date of Patent: February 11, 2014Assignee: Sony CorporationInventors: Masaki Machida, Yosuke Kono
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Patent number: 8632916Abstract: The lithium ion polymer battery includes a positive electrode plate formed with a positive electrode mixture layer having a lithium composite oxide as a positive electrode active material, a negative electrode plate, a separator, and a gel nonaqueous electrolyte, the positive electrode active material having an average particle diameter of 4.5 to 15.5 ?m and a specific surface area of 0.13 to 0.80 m2/g, the positive electrode mixture layer containing at least one of aluminum, titanium, or zirconium based coupling agent having an alkyl or an alkoxy groups having 1 to 18 carbon atoms at a content of 0.01% or more and 5% or less by mass with respect to the mass of the positive electrode active material, and the gel nonaqueous electrolyte being formed from a nonaqueous electrolyte containing a monomer having a (meth)acrylic end group. Thus improved nail penetration characteristics and superior cycle characteristics are obtained.Type: GrantFiled: December 23, 2010Date of Patent: January 21, 2014Assignee: SANYO Electric Co., Ltd.Inventors: Kentaro Takahashi, Shinya Furukawa
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Patent number: 8617742Abstract: There is provided a lithium ion secondary cell excellent in charging and discharging cycle characteristics. A lithium ion secondary cell includes an electrode body including a positive electrode having a positive electrode active material, a negative electrode having a negative electrode active material, and a separator, and a non-aqueous electrolyte containing a lithium salt as a supporting salt in an organic solvent, the electrode body and the non-aqueous electrolyte being accommodated in a case. The positive electrode active material is a lithium transition metal oxide having a spinel type structure. The electrolyte contains a compound represented by a chemical formula (I) in an amount of ? mol relative to the total content ? mol of moisture to be mixed in the cell. ? satisfies ?0.8?log(?/?)?1.5.Type: GrantFiled: August 4, 2009Date of Patent: December 31, 2013Assignee: Toyota Jidosha Kabushiki KaishaInventors: Koji Takahata, Yukihiro Okada
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Publication number: 20130316248Abstract: The invention relates to a method for producing perfluoroalkanesulfonic acid esters and for further transforming the same into the salts thereof. The invention also relates to the use of the produced compounds in electrolytes, batteries, capacitors, supercapacitors, and galvanic cells.Type: ApplicationFiled: July 8, 2009Publication date: November 28, 2013Inventors: Nikolai Ignatyev, Michael Schmidt, Udo Heider, Peter Sartori, Andry Kucheryna
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Publication number: 20130309561Abstract: A rechargeable lithium cell comprising: (a) an anode; (b) a cathode comprising a hybrid cathode active material composed of a graphene material and a phthalocyanine compound, wherein the graphene material is in an amount of from 0.1% to 99% by weight based on the total weight of the graphene material and the phthalocyanine compound combined; and (c) a porous separator disposed between the anode and the cathode and electrolyte in ionic contact with the anode and the cathode. This secondary cell exhibits a long cycle life and the best cathode specific capacity and best cell-level specific energy of all rechargeable lithium-ion cells ever reported.Type: ApplicationFiled: May 17, 2012Publication date: November 21, 2013Inventors: Guorong Chen, Yanbo Wang, Aruna Zhamu, Bor Z. Jang
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Publication number: 20130302697Abstract: A magnesium-ion cell comprising (a) a cathode comprising a carbon or graphitic material as a cathode active material having a surface area to capture and store magnesium thereon, wherein the cathode forms a meso-porous structure having a pore size from 2 nm to 50 nm and a specific surface area greater than 50 m2/g; (b) an anode comprising an anode current collector alone or a combination of an anode current collector and an anode active material; (c) a porous separator disposed between the anode and the cathode; (d) electrolyte in ionic contact with the anode and the cathode; and (e) a magnesium ion source disposed in the anode to obtain an open circuit voltage (OCV) from 0.5 volts to 3.5 volts when the cell is made.Type: ApplicationFiled: May 14, 2012Publication date: November 14, 2013Inventors: Yanbo Wang, Aruna Zhamu, Bor Z. Jang
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Patent number: 8581096Abstract: Replacing liquid electrolytes with solid or quasi-solid electrolytes facilitates the production of photovoltaic cells using continuous manufacturing processes, such as roll-to-roll or web processes, thus creating inexpensive, lightweight photovoltaic cells using flexible plastic substrates.Type: GrantFiled: June 24, 2009Date of Patent: November 12, 2013Assignee: Merck Patent GmbHInventors: Kethinni Chittibabu, Savvas Hadjikyriacou
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Publication number: 20130295465Abstract: There is provided a lithium ion battery having high flame retardancy and good cycle characteristics on a long-term basis.Type: ApplicationFiled: March 2, 2012Publication date: November 7, 2013Applicant: NEC ENERGY DEVICES, LTD.Inventors: Shinako Kaneko, Hitoshi Ishikawa
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Patent number: 8574770Abstract: A non-aqueous battery comprising a positive electrode material capable of being doped with and liberating lithium, a negative electrode material capable of being doped with and liberating lithium, and a polymer electrolyte disposed between the positive and negative electrode materials. The polymer electrolyte is formed by mixing a vinylidene fluoride copolymer and a nonaqueous electrolytic solution with a solvent, followed by evaporation of the solvent, so as to retain a high proportion of the nonaqueous electrolytic solution, leading to high electroconductivity and excellent strength in this state. The vinylidene fluoride copolymer comprises 80 to 97 wt. % of vinylidene fluoride monomer units and 3 to 20 wt. % of units of at least one monomer copolymerizable with vinylidene fluoride monomer, and has an inherent viscosity of 1.7 to 7 dl/g, as measured at 30° C. in a solution at a concentration of 4 g of polymer in 1 liter of N,N-dimethylformamide.Type: GrantFiled: September 21, 2011Date of Patent: November 5, 2013Assignee: Kureha CorporationInventors: Takumi Katsurao, Katsuo Horie, Yukio Ichikawa, Aisaku Nagai
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Publication number: 20130280617Abstract: A gel electrolyte secondary cell in which discharge capacity loss can be suppressed even with the use of a graphitized carbonaceous material of a small particle size as a negative electrode material to assure low impedance, superior cell voltage and load characteristics and high charging/discharging efficiency. To this end, a graphitized carbonaceous material prepared by firing meso-carbon micro-beads is used as a material for a negative electrode.Type: ApplicationFiled: June 21, 2013Publication date: October 24, 2013Inventors: Tadashi Senoo, Hiroyuki Akashi, Hideto Azuma, Mashio Shibuya, Kazuhiro Noda, Shinichiro Yamada, Toshikazu Yasuda, Koji Sekai
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Publication number: 20130280579Abstract: An electrochemical cell includes solid-state, printable anode layer, cathode layer and non-aqueous gel electrolyte layer coupled to the anode layer and cathode layer. The electrolyte layer provides physical separation between the anode layer and the cathode layer, and comprises a composition configured to provide ionic communication between the anode layer and cathode layer by facilitating transmission of multivalent ions between the anode layer and the cathode layer.Type: ApplicationFiled: March 5, 2013Publication date: October 24, 2013Inventors: Paul K. Wright, James W. Evans, Christine Ho