Having Inorganic Binder Or Conductive Filler Patents (Class 429/232)
  • Patent number: 9577243
    Abstract: The present invention relates to a solid composite for use in the cathode of a lithium-sulphur electric current producing cell wherein the solid composite comprises 1 to 75 wt.-% of expanded graphite, 25 to 99 wt.-% of sulphur, 0 to 50 wt.-% of one or more further conductive agents other than expanded graphite, and 0 to 50 wt.
    Type: Grant
    Filed: May 26, 2011
    Date of Patent: February 21, 2017
    Assignee: Sion Power Corporation
    Inventors: Ruediger Schmidt, Alexander Panchenko, Bastian Ewald, Philip Hanefeld, Sorin Ivanovici, Helmut Moehwald, Igor P. Kovalev
  • Patent number: 9577250
    Abstract: Electrodes having nanostructure and/or utilizing nanoparticles of active materials and having high mass loadings of the active materials can be made to be physically robust and free of cracks and pinholes. The electrodes include nanoparticles having electroactive material, which nanoparticles are aggregated with carbon into larger secondary particles. The secondary particles can be bound with a binder to form the electrode.
    Type: Grant
    Filed: February 11, 2014
    Date of Patent: February 21, 2017
    Assignee: Battelle Memorial Institute
    Inventors: Jie Xiao, Dongping Lu, Jun Liu, Jiguang Zhang, Gordon L. Graff
  • Patent number: 9570750
    Abstract: An anode including; an anode active material; and a porous binder including a nanopore, wherein an anode mixture density is about 1.5 g/cc or greater, a lithium battery including the anode and a binder composition. A method of manufacturing the anode material using a polymer that is thermally decomposed in a vacuum at about 200° C. or higher for about 1 hour.
    Type: Grant
    Filed: February 15, 2013
    Date of Patent: February 14, 2017
    Assignee: SAMSUNG SDI CO., LTD.
    Inventors: Beom-Wook Lee, Bum-Jin Chang, Hye-Sun Jeong
  • Patent number: 9570742
    Abstract: Provided is a secondary battery comprising a positive electrode active material represented by the following Chemical Formula 1, Li{LiaMnxM1-a-x-yM?y}O2??[Chemical Formula 1] where 0<a?0.2, x>(1?a)/2, and 0<y<0.2(1?a), and M is simultaneously applied by any one element or two or more elements selected from the group consisting of group 3 and 4 elements, and M? is a metal having an ion diameter of 70 pm or more with an oxidation number of 4 as well as a six-coordinate octahedral structure (specifically, any one element or two or more elements selected from the group consisting of titanium (Ti), vanadium (V), and iron (Fe) are simultaneously applied). According to the present invention, a high capacity lithium secondary battery having improved safety and processability may be provided.
    Type: Grant
    Filed: September 4, 2013
    Date of Patent: February 14, 2017
    Assignees: LG Chem, Ltd., Korea Advanced Institute Of Science And Technology, Industry Foundation Of Chonnam National University
    Inventors: Song Taek Oh, Ki Suk Kang, Dong Hwa Seo, Ji Hyun Hong, Jae Kook Kim
  • Patent number: 9548489
    Abstract: A composition comprising at least 50 weight % of a first particulate electroactive material and 3-15 weight % of a carbon additives mixture comprising elongate carbon nanostructures and carbon black, wherein: the elongate carbon nanostructures comprise at least a first elongate carbon nanostructure material and a different second elongate carbon nanostructure material; and the elongate carbon nanostructures: carbon black weight ratio is in the range 3:1 to 20:1.
    Type: Grant
    Filed: January 29, 2013
    Date of Patent: January 17, 2017
    Assignee: NEXEON LTD.
    Inventors: Mamdouh Elsayed Abdelsalam, Fazil Coowar
  • Patent number: 9537150
    Abstract: To provide an electrode for secondary battery, electrode which can materialize secondary batteries that are adapted into producing high output and additionally whose durability is high. It is characterized in possessing an electrode material that has an active-material powder 11, a conductive material 12 being formed of a carbonaceous material, and being adhered to a surface of said active-material powder 11, and fibrous conductive materials 13 being bonded to said conductive material 12. First of all, it becomes feasible to maintain the electric connection between the active-material powder and the conductive material stably by adhering the conductive material to a surface of the active-material powder. Further, the fibrous conductive materials are bonded to the conductive material that is adhered to a surface of the active-material powder. It is feasible to maintain the electric connection by getting the fibrous conductive materials entangled to each other.
    Type: Grant
    Filed: April 24, 2008
    Date of Patent: January 3, 2017
    Assignees: Toyota Jidosha Kabushiki Kaisha, SEI Corporation
    Inventors: Tsuyoshi Yano, Tetsuhiro Ishikawa, Shinji Saito, Takehiko Sawai
  • Patent number: 9525175
    Abstract: Disclosed is a negative electrode for a secondary lithium battery and a secondary lithium battery including the same, wherein the negative electrode includes a current collector and a negative active material layer formed on the current collector, and the negative active material layer includes an additive including a core including a metal oxide and a metal coating layer formed on the core, and a negative active material.
    Type: Grant
    Filed: November 16, 2010
    Date of Patent: December 20, 2016
    Assignee: SAMSUNG SDI CO., LTD.
    Inventors: Bok-Hyun Ka, Kyeu-Yoon Sheem, Da-Woon Han
  • Patent number: 9508982
    Abstract: A negative electrode composition for a rechargeable lithium battery. The negative electrode includes a negative active material and crystalline carbon conductive material, wherein the negative active material includes soft carbon, and the crystalline carbon conductive material includes graphite having an average particle diameter (D90) of about 1 micrometer to about 20 micrometers.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: November 29, 2016
    Assignee: Samsung SDI Co., Ltd.
    Inventors: Young-Kee Kim, Jeong-Woo Han, Sun-il Park, Ishida Sumihito
  • Patent number: 9502736
    Abstract: A cylindrical single-piece lithium-ion battery of 400 Ah includes: a cylindrical battery enclosure (1), a battery mandrel (3), a plurality of tabs (4), a wiring terminal (6), a positive and negative electrode cover (11); a positive electrode sheet, said battery positive electrode is composed of LiFePO4, conductive carbon-black, graphite, adhesive such as PVDF, and solvent such as NMP; a negative electrode sheet, the battery negative electrode is composed of lithium titanate, conductive carbon-black, graphite, adhesive such as PVDF, and solvent such as NMP. The cylindrical lithium-ion battery made by the invention has a capacity of 400 Ah which is the one reportedly having the largest capacity in the world presently.
    Type: Grant
    Filed: February 22, 2013
    Date of Patent: November 22, 2016
    Assignee: TIANJIN UNIVERSITY
    Inventors: Zhiyuan Tang, Lei Sun, Qi Wang, Guowei Ling
  • Patent number: 9490479
    Abstract: Provided is a non-aqueous electrolyte battery excellent in initial static characteristics and continuous charge characteristics. The non-aqueous electrolyte battery includes a pellet-shaped positive electrode, a pellet-shaped negative electrode, a separator interposed between the positive and negative electrodes, and a non-aqueous electrolyte. The positive electrode includes a positive electrode active material, aluminum powder, a conductive agent, and a binder. The positive electrode active material contains vanadium pentoxide. The positive electrode has a porosity of 35.6 to 45.4 vol %. The negative electrode includes a negative electrode active material containing silicon, a conductive agent, and a binder.
    Type: Grant
    Filed: March 19, 2013
    Date of Patent: November 8, 2016
    Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
    Inventors: Toshie Wata, Tadayoshi Takahashi
  • Patent number: 9458016
    Abstract: Provided is an olivine-type lithium iron phosphate composed of secondary particles having a mean particle diameter (D50) of 5 to 100 ?m, formed by aggregation of primary particles having a mean particle diameter (D50) of 50 to 550 nm, wherein the primary and secondary particles have a composition represented by Formula I below and the secondary particles have a porosity of 15 to 40%: Li1+aFe1?xMx(PO4?b)Xb (I) wherein M is selected from Al, Mg, Ni, Co, Mn, Ti, Ga, Cu, V, Nb, Zr, Ce, In, Zn, Y and combinations thereof; X is selected from F, S, N and combinations thereof; ?0.5?a?+0.5; 0?x?0.5; and 0?b?0.1.
    Type: Grant
    Filed: February 19, 2010
    Date of Patent: October 4, 2016
    Assignee: LG CHEM, LTD.
    Inventors: Sanghoon Choy, Yong Tae Lee, Hong-Kyu Park, Soo Min Park, Ji Eun Lee
  • Patent number: 9431655
    Abstract: A method is provided for fabricating an antimony anode. The method disperses antimony (Sb) particles in a layered carbon network using a process such as mechanical mixing, ball milling, stirring, or ultrasound sonication, forming a Sb/carbon composite. The Sb/carbon composite is mixed with a binder, forming a mixture, and the mixture is deposited on a current collector. Advantageously, the binder may be an aqueous (water soluble) binder. In one aspect, prior to dispersing the Sb particles in the layered carbon network, the Sb particles are coated with carbon. For example, the Sb particles may be dispersed in a solution including a polymer, where the solution may be an aqueous or organic. Alternatively, the Sb particles may be dispersed in a solution including a monomer. The monomer solution is polymerized to form polymer sheathed Sb core-shell structures, and then carbonized. Associated Sb anodes and Sb anode batteries are also provided.
    Type: Grant
    Filed: July 9, 2015
    Date of Patent: August 30, 2016
    Assignee: Sharp Laboratories of America, Inc.
    Inventors: Xin Zhao, Sean Vail, Yuhao Lu
  • Patent number: 9418796
    Abstract: A cathode foil for a solid electrolytic capacitor is designed to increase capacitance, reduce ESR and leakage current, enhance heat resistance, and reduce production costs, while enhancing a power density, realizing rapid charging-discharging, and improving a life property, in an electric energy storage element such as a secondary battery, an electric double layer capacitor and a hybrid capacitor. A cathode foil or a current collector may include a metal foil, a metal layer, a mixed layer containing carbon and a substance composing the metal layer in a mixed state, and a carbon layer consisting substantially of carbon, each formed on the metal foil. The mixed layer is configured to have a composition changing from a state containing substantially only the substance composing the metal layer to a state containing substantially only carbon, in a direction from the metal layer to the carbon layer.
    Type: Grant
    Filed: February 20, 2012
    Date of Patent: August 16, 2016
    Assignee: Japan Capacitor Industrial Co., Ltd.
    Inventors: Mitsuo Yoshimura, Koji Yoshioka
  • Patent number: 9419273
    Abstract: A positive electrode material for an alkaline storage battery includes nickel hydroxide. Zn and an A element are held in solid solution in a crystallite of the nickel hydroxide, the A element being at least one element selected from the group consisting of Al, Ga, Mn, and Mo. The content of the A element, [A]/([Ni]+[A]+[Zn]), is 5 to 16% (where [A] represents the molarity of the A element,[Ni] represents the molarity of nickel, and [Zn] represents the molarity of zinc in the crystallite). [Zn]/([Ni]+[A]+[Zn]) is 1 to 10%. The nickel hydroxide includes ?-phase nickel hydroxide and ?-phase nickel hydroxide.
    Type: Grant
    Filed: September 26, 2013
    Date of Patent: August 16, 2016
    Assignee: GS Yuasa International Ltd.
    Inventors: Tadashi Kakeya, Hideto Watanabe, Manabu Kanemoto, Mitsuhiro Kodama
  • Patent number: 9419283
    Abstract: Provided is a non-aqueous lithium secondary battery comprising an electrode assembly composed of a cathode, an anode, and a separator interposed between the cathode and anode, wherein the cathode and anode have an electrode material containing an active material applied on a current collector, a non-aqueous electrolyte containing a lithium salt, hydrophobic inactive-particles (also, referred to as “hydrophobic particles”) included in the electrode material, and a battery case sealing all the constituent components. Upon adding hydrophobic inactive-particles to the electrode material in a non-aqueous lithium secondary battery, absorption and inflow of water into the electrode material during the battery production is effectively inhibited such as to prevent side reactions caused by water inside the battery, thereby exhibiting improvement in the high-temperature storage characteristics of the battery.
    Type: Grant
    Filed: August 4, 2007
    Date of Patent: August 16, 2016
    Assignee: LG Chem, Ltd.
    Inventors: Ji Heon Ryu, Jung Eun Hyun, Eun Ju Lee, Hanho Lee
  • Patent number: 9350050
    Abstract: A current collector includes a first principal plane and a second principal plane. In the current collector, the roughness of the first principal plane and second principal plane being mutually different.
    Type: Grant
    Filed: March 19, 2007
    Date of Patent: May 24, 2016
    Assignee: SONY CORPORATION
    Inventors: Kenichi Kawase, Isamu Konishiike, Tomoo Takada, Masayuki Iwama, Nozomu Morita, Yoshikazu Kato
  • Patent number: 9325011
    Abstract: Disclosed herein is a cathode active material for a lithium secondary battery, including lithium transition metal oxide, where the lithium transition metal oxide is coated with carbon particles and a polymer resin at a surface thereof, and the polymer resin is a substance inactivated by an electrolyte for a lithium secondary battery and an organic solvent and has a melting point of at least 80° C. A lithium secondary battery having the disclosed cathode active material has advantages of improving rate properties and high temperature stability, so as to provide excellent cell characteristics.
    Type: Grant
    Filed: July 16, 2010
    Date of Patent: April 26, 2016
    Assignee: LG Chem, Ltd.
    Inventors: Sung kyun Chang, Hong-Kyu Park, Sinyoung Park, Je Young Kim, Yong Tae Lee
  • Patent number: 9312564
    Abstract: A positive electrode having a surface on which a positive electrode active material composition including a positive electrode active material is formed. The positive electrode includes a first lithium compound having an open-circuit voltage less than 3V with respect to lithium metal, and a second lithium compound having an open-circuit voltage of 3 V or greater with respect to lithium metal. The first lithium compound includes a solid solution represented by Formula 1: xLizM1-yM?yO2-(1?x)LiaM?bMocO3.
    Type: Grant
    Filed: February 16, 2011
    Date of Patent: April 12, 2016
    Assignee: SAMSUNG SDI CO., LTD.
    Inventor: Kyu-Sung Park
  • Patent number: 9281540
    Abstract: A lithium-ion battery comprises a positive electrode, a negative electrode, an electrolyte system and an ion-selective conducting layer disposed between the positive electrode and the negative electrode. The ion-selective conducting layer consists of high polymers and an inorganic lithium salt having lithium-ion conductivity, or consists of the inorganic lithium salt. The inorganic lithium salt includes LimMnOx, wherein the values of the m and n ensure the LimMnOx an electrically neutral compound, M is selected from at least one of B, P, Si, Se, Zr, W, Ti, Te, Ta, Al and As. The lithium-ion battery has a conduction layer having preference-selective conductivity for the lithium ions and disposed between the positive electrode and the negative electrode. The selective-conduction layer has improved mobility for lithium ions. Metal ions generated from the oxidized metal current collector at the negative electrode due to the over-charging of the battery can be blocked.
    Type: Grant
    Filed: December 6, 2010
    Date of Patent: March 8, 2016
    Assignee: MICROVAST POWER SYSTEMS CO., LTD.
    Inventors: Xiang Li, Jie Tang, Qingjin Sun, Sheng Xu, Jianhai Luo
  • Patent number: 9276257
    Abstract: The invention relates to an anode for lithium secondary battery comprising vapor grown carbon fiber uniformly dispersed without forming an agglomerate of 10 ?m or larger in an anode active material using natural graphite or artificial graphite, which anode is excellent in long cycle life and large current characteristics. Composition used for production for the anode can be produced, for example, by mixing a thickening agent solution containing an anode active material, a thickening agent aqueous solution and styrene butadiene rubber as binder with a composition containing carbon fiber dispersed in a thickening agent with a predetermined viscosity or by mixing an anode active material with vapor grown carbon fiber in dry state and then adding polyvinylidene difluoride thereto.
    Type: Grant
    Filed: February 21, 2014
    Date of Patent: March 1, 2016
    Assignee: SHOWA DENKO K.K.
    Inventors: Masataka Takeuchi, Chiaki Sotowa
  • Patent number: 9240589
    Abstract: A method for making an electrode active material of a lithium ion battery is provided. A sulfur grafted poly(pyridinopyridine) is synthesized. The sulfur grafted poly(pyridinopyridine) includes a poly(pyridinopyridine) matrix and a plurality of poly-sulfur groups dispersed in the poly(pyridinopyridine) matrix. The electrically conductive polymer is coated on a surface of the sulfur grafted poly(pyridinopyridine). An electrode active material of a lithium ion battery is also provided.
    Type: Grant
    Filed: November 4, 2013
    Date of Patent: January 19, 2016
    Assignees: Tsinghua University, HON HAI PRECISION INDUSTRY CO., LTD.
    Inventors: Xiang-Ming He, Li Wang, Jian-Jun Li, Jian Gao
  • Patent number: 9227194
    Abstract: Achieved is an electricity storage device having a low internal resistance and a high energy density. In a pore distribution, which is obtained for a carbon material using a BJH method and is plotted on a graph with a pore diameter D on the abscissa and a derivative ?V/?D of a pore volume per unit mass or unit volume with respect to the pore diameter D on the ordinate, a ratio M1/M2 of the maximum value M1 of the derivative ?V/?D in an interval of the pore diameter D from 10 to 100 nm with respect to the maximum value M2 of the derivative ?V/?D in an interval of the pore diameter D from 2 to 10 nm is 1.5 or more.
    Type: Grant
    Filed: April 14, 2011
    Date of Patent: January 5, 2016
    Assignee: CATALER CORPORATION
    Inventors: Tetsuya Kume, Yuko Matsumura, Yasuyuki Higaonna
  • Patent number: 9214700
    Abstract: Disclosed is lithium iron phosphate having an olivine crystal structure, wherein the lithium iron phosphate has a composition represented by the following Formula 1, a sulfur compound with a sulfide bond is contained, as an impurity, in the lithium iron phosphate particles, and carbon (C) is coated on particle surfaces of the lithium iron phosphate: Li1+aFe1-xMx(PO4-b)Xb??(1) (wherein M, X, a, x, and b are the same as defined in the specification).
    Type: Grant
    Filed: October 9, 2012
    Date of Patent: December 15, 2015
    Assignee: LG CHEM, LTD.
    Inventors: Hyun Kuk Noh, Hong Kyu Park, Cheol-Hee Park, Su-Min Park, JiEun Lee
  • Patent number: 9190694
    Abstract: High capacity silicon based anode active materials are described for lithium ion batteries. These materials are shown to be effective in combination with high capacity lithium rich cathode active materials. Supplemental lithium is shown to improve the cycling performance and reduce irreversible capacity loss for at least certain silicon based active materials. In particular silicon based active materials can be formed in composites with electrically conductive coatings, such as pyrolytic carbon coatings or metal coatings, and composites can also be formed with other electrically conductive carbon components, such as carbon nanofibers and carbon nanoparticles. Additional alloys with silicon are explored.
    Type: Grant
    Filed: November 3, 2010
    Date of Patent: November 17, 2015
    Assignee: Envia Systems, Inc.
    Inventors: Herman A. Lopez, Yogesh Kumar Anguchamy, Haixia Deng, Yongbong Han, Charan Masarapu, Subramanian Venkatachalam, Sujeet Kumar
  • Patent number: 9153816
    Abstract: Disclosed is a cathode mix for secondary batteries, comprising lithium iron phosphate, coated with carbon (C), having an olivine crystal structure that contains a compound represented by the following formula 1 as a cathode active material, wherein a mean particle diameter of primary particles in the cathode active material is 2 ?m or less, and the cathode mix contains a hydrophilic conductive material as a conductive material. (1?x)Li1+aFe1?yMy(PO4?z)Az.xC??(1) wherein M is at least one selected from Al, Mg, Ni, Co, Mn, Ti, Ga, Cu, V, Nb, Zr, Ce, In, Zn and Y, A is at least one selected from F, S and N, and 0<x?0.2, ?0.5?a?+0.5, 0?y?0.5, 0?z?0.1.
    Type: Grant
    Filed: July 16, 2013
    Date of Patent: October 6, 2015
    Assignee: LG CHEM, LTD.
    Inventors: Sung-Kyun Chang, Seung-tae Hong
  • Patent number: 9083058
    Abstract: Disclosed is a nonaqueous electrolytic solution which enables formation of a nonaqueous-electrolyte battery having high capacity and excellent storage characteristics at high temperatures, while sufficiently enhancing safety at the time of overcharge. A nonaqueous-electrolyte battery produced by using the nonaqueous electrolytic solution is also disclosed. The nonaqueous electrolytic solution comprises an electrolyte and a nonaqueous solvent, and includes any of specific nonaqueous electrolytic solutions (A) to (D).
    Type: Grant
    Filed: February 27, 2009
    Date of Patent: July 14, 2015
    Assignee: MITSUBISHI CHEMICAL CORPORATION
    Inventors: Yumiko Nakagawa, Minoru Kotato, Daisuke Noda, Shinichi Kinoshita
  • Publication number: 20150132655
    Abstract: It is an object of an exemplary embodiment of the present invention to provide a negative electrode active material having excellent rate characteristics and cycle characteristics. One embodiment according to the present invention is a negative electrode active material comprising a carbon-containing composite, wherein, in the carbon-containing composite, an active material capable of intercalating and deintercalating lithium, conductive nanofibers and conductive carbon particles are coated with a carbon material and are integrated.
    Type: Application
    Filed: December 20, 2012
    Publication date: May 14, 2015
    Applicant: NEC CORPORATION
    Inventors: Ryota Yuge, Noriyuki Tamura
  • Patent number: 9023537
    Abstract: A positive electrode includes: a positive electrode collector; and a positive electrode active material layer provided on the positive electrode collector and containing a positive electrode active material and an alkaline earth metal carbonate having a fixed form.
    Type: Grant
    Filed: April 6, 2011
    Date of Patent: May 5, 2015
    Assignee: Sony Corporation
    Inventors: Kentaro Yoshimura, Toru Odani, Tadahiko Kubota
  • Patent number: 9005809
    Abstract: The present invention relates to the use of porous structures comprising sulfur in electrochemical cells. Such materials may be useful, for example, in forming one or more electrodes in an electrochemical cell. For example, the systems and methods described herein may comprise the use of an electrode comprising a conductive porous support structure and a plurality of particles comprising sulfur (e.g., as an active species) substantially contained within the pores of the support structure. The inventors have unexpectedly discovered that, in some embodiments, the sizes of the pores within the porous support structure and/or the sizes of the particles within the pores can be tailored such that the contact between the electrolyte and the sulfur is enhanced, while the electrical conductivity and structural integrity of the electrode are maintained at sufficiently high levels to allow for effective operation of the cell.
    Type: Grant
    Filed: August 24, 2010
    Date of Patent: April 14, 2015
    Assignee: Sion Power Corporation
    Inventors: William F. Wilkening, Christopher T. S. Campbell, Savannah V. Burnside
  • Publication number: 20150099175
    Abstract: The present invention provides an electrode material in which unevenness in a supporting amount of a carbonaceous film is less when using an electrode-active material having a carbonaceous film on a surface thereof as the electrode material, and which is capable of improving conductivity, and a method for producing the electrode material. The electrode material includes an aggregate formed by aggregating an electrode-active material in which a carbonaceous film is formed on a surface. In the electrode material, an average particle size of the aggregate is 0.5 to 100 ?m, a volume density of the aggregate is 50 to 80 vol % of a volume density in a case in which the aggregate is a solid, and 80% or more of the surface of the electrode-active material is covered with the carbonaceous film. Alternatively, the electrode material includes an aggregate formed by aggregating electrode-active material particles in which a carbonaceous film is formed on a surface.
    Type: Application
    Filed: December 11, 2014
    Publication date: April 9, 2015
    Applicant: SUMITOMO OSAKA CEMENT CO., LTD.
    Inventors: Takao KITAGAWA, Hirofumi YASUMIISHI, Masaru UEHARA
  • Patent number: 8986885
    Abstract: An object of the present invention is to provide a lithium ion battery which is excellent in properties at large current and can be applied to applications requiring high output power even when the mixture layers are made thick. The present invention provides a lithium ion battery including a positive electrode including a positive electrode mixture layer formed on a current collector, a negative electrode including a negative electrode mixture layer formed on a current collector and an electrolyte, the positive electrode and the negative electrode being disposed through the intermediary of a separator, wherein the positive electrode includes as a positive electrode active material a lithium composite oxide represented by LiNiaMnbCOcMdO2 (in the formula, M is at least one selected from the group consisting of Fe, V, Ti, Cu, Al, Sn, Zn, Mg, B and W, a+b+c+d=1, 0.2?a?0.8, 0.1?b?0.4, 0?c?0.4 and 0?d?0.
    Type: Grant
    Filed: February 16, 2011
    Date of Patent: March 24, 2015
    Assignee: Hitachi Automotive Systems, Ltd.
    Inventors: Akihide Tanaka, Etsuko Nishimura
  • Patent number: 8986890
    Abstract: A cathodal material for lithium cells comprises a porous lithium oxide microparticle is provided. The porous lithium oxide microparticle comprises a plurality of porous lithium oxide nanoparticles formed with a first conductive layer therein, a pore defined by connecting the lithium oxide nanoparticles, a second conductive layer covering at least a surface of one of the lithium oxide nanoparticles contacting the first conductive layer and forming a three-dimensional conductive network between the lithium oxide nanoparticles, and a conductive fiber connecting with the second conductive layer.
    Type: Grant
    Filed: April 14, 2008
    Date of Patent: March 24, 2015
    Assignee: Industrial Technology Research Institute
    Inventors: Jin-Ming Chen, Chia-Haw Hsu, Yu-Run Lin, Mei-Hui Hsiao, Tu Chen
  • Publication number: 20150079470
    Abstract: According to one embodiment, there is provided a nonaqueous electrolyte battery. The nonaqueous electrolyte battery includes a positive electrode, a negative electrode, and a nonaqueous electrolyte. The positive electrode includes a positive current collector and a positive electrode material layer formed on the positive electrode current collector. The positive electrode material layer includes a positive electrode active material and a first conductive agent. In a mapping image for the positive electrode material layer, a ratio of an occupancy area of the first conductive agent to an occupancy area of the positive electrode active material is from 1.5 to 5.
    Type: Application
    Filed: September 5, 2014
    Publication date: March 19, 2015
    Applicant: Kabushiki Kaisha Toshiba
    Inventors: Tetsuro KANO, Hikaru YOSHIKAWA, Hidesato SARUWATARI, Kazuya KURIYAMA
  • Publication number: 20150079472
    Abstract: A method for manufacturing silicon flakes includes steps as follows. A silicon material is contacted with a machining tool which includes at least one abrasive particle fixedly disposed thereon. The silicon material is scraped along a displacement path with respect to the machining tool to generate the silicon flakes having various particle sizes.
    Type: Application
    Filed: June 13, 2014
    Publication date: March 19, 2015
    Inventors: Kun-Fung LIN, Rong-Ruey JENG, Han-Tu LIN, Chih-Hung CHAN
  • Patent number: 8974960
    Abstract: The present disclosure includes a sulfur-carbon nanotube composite comprising a sheet of carbon nanotubes and sulfur nucleated upon the carbon nanotubes, and methods for synthesizing the same. In some embodiments, the sulfur-carbon composite may further be binder-free and include a sheet of carbon nanotubes, rendering a binder and a current collector unnecessary. In other embodiments of the present disclosure, a cathode comprising the sulfur-carbon nanotube composite is disclosed. In additional embodiments of the present disclosure, batteries may include the cathodes described herein. Those batteries may achieve high rate capabilities.
    Type: Grant
    Filed: December 22, 2011
    Date of Patent: March 10, 2015
    Assignee: Board of Regents, The University of Texas System
    Inventors: Arumugam Manthiram, Yu-Sheng Su
  • Patent number: 8968932
    Abstract: A compound having a high reduction resistance and being capable of sufficiently performing a function as an electronic conductive additive when added to a positive electrode active material as an electronic conductive additive is provided. In a method for producing a cobalt cerium compound including a step of depositing a hydroxide containing cobalt and cerium in an aqueous solution containing cobalt ions and cerium ions by changing the pH of the aqueous solution and thereafter performing a treatment of oxidizing the hydroxide, the ratio of the cerium ions contained in the aqueous solution containing the cobalt ions and the cerium ions is set to be more than 5% by atom and 70% by atom or less with respect to the sum of the cobalt ions and the cerium ions before the hydroxide is deposited.
    Type: Grant
    Filed: July 16, 2010
    Date of Patent: March 3, 2015
    Assignees: GS Yuasa International Ltd., National Institute of Advanced Industrial Science and Technology
    Inventors: Masanori Morishita, Tadashi Kakeya, Seijiro Ochiai, Aki Nakashima, Yoshiteru Kawabe, Tetsuo Sakai
  • Patent number: 8968930
    Abstract: An electrode for a nonaqueous electrolyte secondary battery includes a current collector and an electrode material disposed on the current collector. the electrode material has a thickness of 50 ?m or larger. The electrode material contains at least active material particles, an electro-conductive material, and a crack preventive material. An average particle diameter of the crack preventive material is two times or larger than an average particle diameter of the active material particles.
    Type: Grant
    Filed: March 26, 2012
    Date of Patent: March 3, 2015
    Assignee: Sharp Kabushiki Kaisha
    Inventors: Shumpei Nishinaka, Takahiro Matsuyama
  • Publication number: 20150044516
    Abstract: The present invention, in part, relates to a carbon black having a) a nitrogen BET surface area (BET) of from about 600 m2/g to about 2100 m2/g, b) a CDBP value in mL/100 g of from about (?2.8+(b*BET)) to about (108+(b*BET)), where b is 0.087 and BET is expressed in m2/g, and c) an apparent density (p, g/cm3) of at least about 0.820+q*BET, where q=?2.5×10?4, as determined at a compressive force (P) of 200 kgf/cm2 on dry carbon black powder. Energy storage devices, such as electrochemical double layer capacitors (EDLC's), containing the carbon black are also disclosed. Methods for making the carbon blacks and EDLC's made with them are also provided.
    Type: Application
    Filed: October 28, 2014
    Publication date: February 12, 2015
    Inventors: Agathagelos Kyrlidis, Raymond M. Sawka, Geoffrey D. Moeser, Pavel A. Kossyrev, Ned J. Hardman
  • Patent number: 8945774
    Abstract: The present invention claims the addition of vinylene carbonate (VC) and optionally also fluoroethylene carbonate to the electrolyte of lithium ion cells having a structural silicon composite anode, i.e. an anode containing fibers or particles of silicon. The additive significantly improves the cycling performance of the cells. A VC content in the range 3.5-8 wt % based on the weight of the electrolyte has been found to be optimum.
    Type: Grant
    Filed: June 7, 2011
    Date of Patent: February 3, 2015
    Assignee: Nexeon Ltd.
    Inventors: Fazlil Coowar, Mamdouh Elsayed Abdelsalam, Michael Jonathan Lain
  • Patent number: 8945771
    Abstract: A negative-electrode active material includes a compound that has a pseudobrookite structure.
    Type: Grant
    Filed: September 12, 2012
    Date of Patent: February 3, 2015
    Assignee: Toyota Jidosha Kabushiki Kaisha
    Inventor: Takeshi Tojigamori
  • Publication number: 20150030931
    Abstract: The non-aqueous electrolyte secondary battery 10 provided by the present invention comprises a positive electrode 30, a negative electrode 50 and a non-aqueous electrolyte. The negative electrode 50 includes a negative electrode current collector 52 and a negative electrode active material layer 54 formed on the current collector 52, the negative electrode active material layer 54 containing a negative electrode active material 55 capable of storing and releasing charge carriers and having shape anisotropy so that the charge carriers are stored and released along a predefined direction. The negative electrode active material layer 54 includes, at a bottom thereof contacting the current collector 52, a minute conductive material 57 with granular shape and/or minute conductive material 57 with fibrous shape having an average particle diameter that is smaller than that of the negative electrode active material 55, and includes, at the bottom thereof; a part of the negative electrode active material 55.
    Type: Application
    Filed: December 14, 2011
    Publication date: January 29, 2015
    Inventors: Koji Takahata, Tatsuya Hashimoto, Yoshiyuki Ozaki, Yukihiro Okada, Kenji Tsuchiya, Masanori Kitayoshi, Naoyuki Wada
  • Publication number: 20150017544
    Abstract: This invention discloses an electrochemical device having a multilayer structure and methods for making such a device. Specifically, this invention discloses a multilayer electrochemical device having nano-sized cobalt oxyhydroxide conductive agents and/or active materials within the polymer layers.
    Type: Application
    Filed: June 18, 2014
    Publication date: January 15, 2015
    Inventors: Binay Prasad, Levi T. Thompson, Paul G. Rasmussen
  • Patent number: 8932765
    Abstract: An object is to provide an electrode assembly for an electric storage device, such as a nonaqueous electrolyte cell, and an electric storage device that are capable of preventing increase of a short-circuit current at the time of occurrence of a short-circuit within a cell and have high safety. In order to achieve the object, provided is an electrode assembly for an electric storage device including a positive electrode, a negative electrode and a separator disposed between the positive electrode and the negative electrode, in which at least one of the positive electrode and the negative electrode includes a current collector, an active material layer formed on at least one face of the current collector, and an undercoat layer formed between the current collector and the active material layer and including an organic binder that evaporates and decomposes when heated to a predetermined temperature or more.
    Type: Grant
    Filed: July 6, 2011
    Date of Patent: January 13, 2015
    Assignee: GS Yuasa International Ltd.
    Inventors: Akihiko Miyazaki, Sumio Mori, Taro Yamafuku, Minoru Teshima
  • Publication number: 20150004487
    Abstract: Disclosed is an electrode for secondary batteries including an electrode mixture including an electrode active material, binder and conductive material coated on a current collector wherein a conductive material is coated to a thickness of 1 to 80 ?m on the current collector and the electrode mixture is coated on a coating layer of the conductive material so as to improve electrical conductivity.
    Type: Application
    Filed: September 18, 2014
    Publication date: January 1, 2015
    Applicant: LG Chem, Ltd.
    Inventors: Min Hee Lee, Tae Jin Park, Daehong Kim
  • Publication number: 20140377663
    Abstract: The present invention relates to a sheet composite of a metal compound and a fibrous carbon that can yield an electrode or an electrochemical element which achieves output property and high energy density, as well as a manufacturing method thereof. Sheer stress and centrifugal force are applied to a solution comprising a starting material metal compound and a fibrous carbon and reacted in a rotating reaction container to produce a composite material of metal compound and fibrous carbon. The composite material and a binder which is a fibrous carbon are stirred to produce a mixed solvent. The mixed solvent is subjected to suction filtration and vacuum drying. This mixed solution is molded in a paper machine to prepare a sheet composite. The fibrous carbon is carbon nanotubes having a specific surface area of 600 to 2600 m2/g.
    Type: Application
    Filed: October 29, 2012
    Publication date: December 25, 2014
    Inventors: Shunzo Suematsu, Daisuke Horii, Kenji Tamamitsu, Katsuhiko Naoi, Wako Naoi, Hiroaki Hatori, Kenji Hata, Morio Yumura
  • Publication number: 20140370384
    Abstract: There are provided a film-type negative electrode filled with an active material and a method of manufacturing the same. The negative electrode according to the present invention includes a porous base film and a negative active material nanoparticle filled in pores of the porous base film According to the present invention, an excessive change in volume of a negative active material can be minimized during charging and discharging so as to improve a lifespan characteristic.
    Type: Application
    Filed: December 27, 2012
    Publication date: December 18, 2014
    Inventors: Ju Myeung Lee, Woo Young Yang, Soichiro Kawakami, Dong Gyu Chang, Hyun Ju Jung
  • Publication number: 20140370395
    Abstract: A lithium (Li) ion battery comprising a cathode, a separator, an organic electrolyte, an anode, and a carbon black conductive additive, wherein the carbon black has been heated treated in a CO2 gas environment at a temperature range of between 875-925 degrees Celsius for a time range of between 50 to 70 minutes to oxidize the carbon black and reduce an electrochemical reactivity of the carbon black towards the organic electrolyte.
    Type: Application
    Filed: May 9, 2014
    Publication date: December 18, 2014
    Applicant: The Regents of University of California
    Inventors: Robert Kostecki, Thomas Richardson, Ulrike Boesenberg, Elad Pollak, Simon Lux
  • Publication number: 20140370360
    Abstract: A secondary battery includes a first electrode, a second electrode, an ion transmission member in contact with the first electrode and the second electrode, and a hole transmission member in contact with the first electrode and the second electrode. Suitably, the first electrode contains a composite oxide. The composite oxide contains alkali metal or alkali earth metal. The composite oxide contains a p-type composite oxide as a p-type semiconductor.
    Type: Application
    Filed: June 25, 2013
    Publication date: December 18, 2014
    Inventors: Si MENGQUN, Zhou YING
  • Patent number: 8911905
    Abstract: An anode of a lithium battery includes a composite film, the composite film includes a carbon nanotube film structure and a plurality of nanoscale tin oxide particles dispersed therein. A lithium battery includes at least a cathode, an electrolyte, and the anode mentioned above. A charge/discharge capacity of the lithium battery using the anode can be improved.
    Type: Grant
    Filed: August 15, 2011
    Date of Patent: December 16, 2014
    Assignees: Tsinghua University, Hon Hai Precision Industry Co., Ltd.
    Inventors: Chen Feng, Hao-Xu Zhang, Kai-Li Jiang, Shou-Shan Fan
  • Publication number: 20140363744
    Abstract: A solid-state battery cell includes an anode, a cathode, and a solid electrolyte matrix. At least the anode or the cathode may include an active electrode material having pores. Further, an inner surface of the pores may be coated with a first surface-ion diffusion enhancement coating. The solid electrolyte matrix may further include an electrically insulating matrix for a solid electrolyte. The electrically insulating matrix may have pores or passages and an inner surface of the pores or the passages may be coated with a second surface-ion diffusion enhancement coating.
    Type: Application
    Filed: June 4, 2014
    Publication date: December 11, 2014
    Applicant: IMEC VZW
    Inventors: Philippe M. Vereecken, Cedric Huyghebaert