With Insulating Separator, Spacer Or Retainer Means Patents (Class 429/246)
  • Patent number: 8906543
    Abstract: A battery including an electrode assembly having a positive electrode, a negative electrode and a separator interposed between the electrodes, a container housing the electrode assembly, a tab attached to a first side of an uncoated region of the electrode assembly, the tab having a terminal, a first insulator interposed between the tab and a first inner surface of the container, and a cap assembly closing the container and having the terminal passing therethrough.
    Type: Grant
    Filed: October 29, 2010
    Date of Patent: December 9, 2014
    Assignee: Samsung SDI Co., Ltd.
    Inventor: Hyun-Seok Kim
  • Publication number: 20140356729
    Abstract: The invention relates to a metal accumulation inhibiting and performance enhancing isolated or synthesized supplement for use in or in association with rechargeable electrochemical energy storage cells, and a system for delivering the supplement including articles of plastic, articles containing plastic, articles similar to plastic, plastic containers, apparatus, porous electrodes, liquids and electrolytes, in particular, articles, apparatus, electrodes, insolating sheets, liquids and electrolytes associated with rechargeable electrochemical energy storage cells incorporating one or more supplements. An effective amount of the supplement typically exhibits foaming of an electrolyte, providing a visual indicator of activity in attenuating metal deposition on, and thereby reducing metal accumulation on, various surfaces in the rechargeable electrochemical storage cell.
    Type: Application
    Filed: May 30, 2014
    Publication date: December 4, 2014
    Inventor: Johan C. FITTER
  • Publication number: 20140356728
    Abstract: A thin film production apparatus of the present invention includes: a substrate feeding mechanism configured to continuously feed a substrate; a substrate receiving mechanism configured to receive the substrate; a substrate conveying mechanism; a film formation roller; a first film formation source configured to form a first thin film on a film formation surface of the substrate traveling on an upstream side of the film formation roller in a substrate conveyance direction along the substrate conveying mechanism; and a second film formation source configured to form a second thin film on a roller circumferential surface of the film formation roller. The film formation roller is placed so that a surface of the second thin film is joined in a face-to-face manner to a surface of the first thin film formed on the substrate. The substrate receiving mechanism winds thereon or stores therein the substrate, the first thin film, and the second thin film which have been integrated together.
    Type: Application
    Filed: May 29, 2014
    Publication date: December 4, 2014
    Applicant: PANASONIC CORPORATION
    Inventor: Kazuyoshi HONDA
  • Publication number: 20140356721
    Abstract: A method includes combining a coating material and an uncoated particulate core material in a solution having a selected ionic strength. The selected ionic strength promotes coating of the uncoated particulate core material with the coating material to form coated particles; and the coated particles can be collected after formation. The coating material has a higher electrical conductivity than the core material.
    Type: Application
    Filed: May 30, 2014
    Publication date: December 4, 2014
    Applicant: University of Southern California
    Inventors: Chongwu Zhou, Jiepeng Rong, Mingyuan Ge, Xin Fang
  • Publication number: 20140349192
    Abstract: A fabricating method of an electrode assembly according to the present invention includes forming a radical unit having a four-layered structure obtained by stacking a first electrode, a first separator, a second electrode, and a second separator one by one, and stacking at least one radical unit one by one to form a unit stack part.
    Type: Application
    Filed: August 13, 2014
    Publication date: November 27, 2014
    Inventors: Ji Won PARK, Seung Jae YOU, Myung Hoon KO, Jin Ho BAN, Hyang Mok LEE
  • Publication number: 20140335422
    Abstract: An implantable device, such as a pacer, defibrillator, or other cardiac rhythm management device, can include one or more MRI Safe components. In an example, the implantable device includes a battery including a first electrode and a second electrode separate from the first electrode. The second electrode includes a first surface and a second surface. The second electrode includes a slot through the second electrode from the first surface toward the second surface. The slot extends from a perimeter of the second electrode to an interior of the second electrode. The slot is configured to at least partially segment a surface area of the second electrode to reduce a radial current loop size in the second electrode.
    Type: Application
    Filed: July 29, 2014
    Publication date: November 13, 2014
    Inventors: Michael J. Lyden, Michael J. Root, Kurt E. Koshiol, Lisa B. Schmalhurst, Yingbo Li, Masoud Ameri
  • Publication number: 20140335421
    Abstract: A microporous membrane of a polyethylene-based composite material, including high density and high crystallinity of polyethylene as a base material. The polyethylene is modified by a modifying agent accounting for 10-25 wt. % of the membrane and including a moderate molecular weight of rubber selected from polyisobutylene (PIB), ethylene-propylene methylene copolymer (EPM), or a mixture thereof, the rubber having a dynamic viscosity of between 50 and 2000 Pa·S at 100° C. and a weight average molecular weight of between 90,000 and 250,000. The modified polyethylene is dissolved in a solvent and a pore-forming agent for pore formation.
    Type: Application
    Filed: June 23, 2014
    Publication date: November 13, 2014
    Inventors: Xin LI, Jianhua LI, Yongjun JIAO, Long LI, Wei CHEN, Xinjian DENG
  • Publication number: 20140329143
    Abstract: In a lithium ion battery, one or more chelating agents may be attached to a microporous polymer separator for placement between a negative electrode and a positive electrode or to a polymer binder material used to construct the negative electrode, the positive electrode, or both. The chelating agents may comprise, for example, at least one of a crown ether, a crown ether, a podand, a lariat ether, a calixarene, a calixcrown, or mixtures thereof. The chelating agents can help improve the useful life of the lithium ion battery by complexing with unwanted metal cations that may become present in the battery's electrolyte solution while, at the same time, not significantly interfering with the movement of lithium ions between the negative and positive electrodes.
    Type: Application
    Filed: July 21, 2014
    Publication date: November 6, 2014
    Inventors: Ion C. Halalay, Stephen J. Harris, Timothy J. Fuller
  • Patent number: 8877367
    Abstract: In an All-Electron Battery (AEB), inclusions embedded in an active region between two electrodes of a capacitor provide enhanced energy storage. Electrons can tunnel to/from and/or between the inclusions, thereby increasing the charge storage density relative to a conventional capacitor. One or more barrier layers is present in an AEB to block DC current flow through the device. The AEB effect can be enhanced by using multi-layer active regions having inclusion layers with the inclusions separated by spacer layers that don't have the inclusions. The use of cylindrical geometry or wrap around electrodes and/or barrier layers in a planar geometry can enhance the basic AEB effect. Other physical effects that can be employed in connection with the AEB effect are excited state energy storage, and formation of a Bose-Einstein condensate (BEC).
    Type: Grant
    Filed: December 9, 2010
    Date of Patent: November 4, 2014
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Timothy P. Holme, Friedrich B. Prinz, Philip B. Van Stockum
  • Patent number: 8877387
    Abstract: The method for producing a lithium ion secondary battery includes: selecting a positive electrode sheet, negative electrode sheet, and separator sheet; constructing an electrode assembly by superimposing the selected sheets; and housing the above electrode assembly in a battery case along with an electrolyte solution. In the method, at least one of the sheets is selected such that it satisfies the relationship 0.8<a/b<1.5 where a and b represent the slopes of straight lines respectively that are determined in tests under the respective conditions of (1) a high-rate loading-unloading cycle and (2) a low-rate loading-unloading cycle.
    Type: Grant
    Filed: December 25, 2009
    Date of Patent: November 4, 2014
    Assignee: Toyota Jidosha Kabushiki Kaisha
    Inventors: Tomohiro Nakano, Hiroki Nagai
  • Patent number: 8871373
    Abstract: An insulation portion for an electrochemical cell having a plurality of slots into which bent electrode tabs are slid through during an assembly process of an electrochemical cell. A latch is disposed adjacent the slots and is movable from a resting position to a biased position to engage the electrode tabs. Attachment of the insulation portion to the electrochemical cell and bending of the electrode tabs can be robotically performed, such that controllers of an attachment device and bending device are in communication with each other.
    Type: Grant
    Filed: December 1, 2010
    Date of Patent: October 28, 2014
    Assignee: A123 Systems LLC
    Inventors: Charles E. Martin, Lucien Fontaine, William H. Gardner, Keith M. Bibby, Dale Beaver
  • Publication number: 20140295285
    Abstract: The present invention refers to a method of preparing a separator, comprising: producing a dispersion comprising inorganic particles, a polymer binder, polymer fibers and a solvent; applying the dispersion on the top surface of a substrate to form a non-woven fabric web as a layer comprising the inorganic particles, the polymer binder and the polymer fiber, in which the inorganic particles are positioned in gaps of the polymer fibers and adhered thereto by the polymer binder; and drying and compressing the non-woven fabric web to obtain a non-woven fabric substrate; a separator prepared by the method; and an electrochemical device comprising the separator.
    Type: Application
    Filed: June 12, 2014
    Publication date: October 2, 2014
    Inventors: Joo-Sung Lee, Bo-Kyung Ryu, Jong-Hun Kim
  • Publication number: 20140295245
    Abstract: An electric storage device includes: a container; an electrode assembly contained in the container, the electrode assembly including a positive electrode having a positive electrode substrate and a positive electrode active material layer that is formed on the positive electrode substrate and contains a positive electrode active material, a negative electrode having a negative electrode substrate and a negative electrode active material layer that is formed on the negative electrode substrate and contains a negative electrode active material, and a separator interposed between the positive and negative electrodes; and an electrolyte contained in the container, wherein the separator is configured such that a stress caused at a specific compressed depth in the separator, which corresponds to 5% of the thickness of the negative electrode active material layer, is 0.5 MPa or more and 14 MPa or less. An electric storage apparatus includes a plurality of electric storage devices described above.
    Type: Application
    Filed: March 27, 2014
    Publication date: October 2, 2014
    Applicant: GS Yuasa International Ltd.
    Inventor: Akihiko Miyazaki
  • Patent number: 8846265
    Abstract: A UEA for a fuel cell having an active region and a feed region is provided. The UEA includes an electrolyte membrane disposed between a pair of electrodes. The electrolyte membrane and the pair of electrodes is further disposed between a pair of DM. The electrolyte membrane, the pair of electrodes, and the DM are configured to be disposed at the active region of the fuel cell. A barrier film coupled to the electrolyte membrane is configured to be disposed at the feed region of the fuel cell. The dimensions of the electrolyte membrane are thereby optimized. A fuel cell having the UEA, and a fuel cell stack formed from a plurality of the fuel cells, is also provided.
    Type: Grant
    Filed: August 5, 2013
    Date of Patent: September 30, 2014
    Assignee: GM Global Technology Operations LLC
    Inventors: Matthew J. Beutel, Saurabh Vyas, Ronald L. James, Steven G. Goebel
  • Publication number: 20140287323
    Abstract: The invention relates to a membrane comprising a poly(dialkylene ester) thermoplastic polyurethane composition. The invention also provides an electrochemical cell comprising a positive electrode, a negative electrode, and (I) a separator membrane disposed between said positive and negative electrodes, wherein the said membrane comprises (A) the described poly(dialkylene ester) thermoplastic polyurethane composition.
    Type: Application
    Filed: October 24, 2012
    Publication date: September 25, 2014
    Inventors: Qiwei Lu, Feina Cao, Tesham Gor, Jian Xie, Yadong Liu, Yona Eckstein
  • Patent number: 8841021
    Abstract: A secondary battery including a can for accommodating an electrode assembly, the can having an opening at one side thereof; a cap assembly for sealing the opening of the can; an insulation case between the electrode assembly and the cap assembly, the insulation case being disposed in an upper portion of the can; and an insertion guide protruding from an outer surface of the insulation case, and having a lower portion facing the can, the lower portion being inclined at a predetermined angle relative to the outer surface the insulation case.
    Type: Grant
    Filed: September 24, 2010
    Date of Patent: September 23, 2014
    Assignee: Samsung SDI Co., Ltd.
    Inventor: Hwa-Il Uh
  • Patent number: 8841020
    Abstract: A battery comprises a battery case forming a substantially sealed enclosure and an electrode stack within the enclosure. The electrode stack includes a first set of electrode elements and a second set of electrode elements. The electrode elements in the second set alternate with the electrode elements in the first set within the electrode stack. A conductive tab extends from each of the electrode elements in the first and second sets, wherein each of the conductive tabs in the first set forms an aperture, wherein the apertures are coincident with each other. The battery further comprises a feedthrough including a feedthrough pin extending through the battery case and through each of the coincident apertures, wherein the feedthrough pin serves as a positive terminal for the battery.
    Type: Grant
    Filed: October 27, 2010
    Date of Patent: September 23, 2014
    Assignee: Medtronic, Inc.
    Inventor: Joseph Viavattine
  • Patent number: 8841019
    Abstract: An implantable device, such as a pacer, defibrillator, or other cardiac rhythm management device, can include one or more MRI Safe components. In an example, the implantable device includes a battery including a first electrode and a second electrode separate from the first electrode. The second electrode includes a first surface and a second surface. The second electrode includes a slot through the second electrode from the first surface toward the second surface. The slot extends from a perimeter of the second electrode to an interior of the second electrode. The slot is configured to at least partially segment a surface area of the second electrode to reduce a radial current loop size in the second electrode.
    Type: Grant
    Filed: December 29, 2010
    Date of Patent: September 23, 2014
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Michael J. Lyden, Michael J. Root, Kurt E. Koshiol, Lisa B. Schmalhurst, Yingbo Li, Masoud Ameri
  • Publication number: 20140272547
    Abstract: An electrode structure for use in an energy storage device, the electrode structure comprising a population of electrodes, a population of counter-electrodes and an electrically insulating material layer separating members of the electrode population from members of the counter-electrode population, each member of the electrode population having a longitudinal axis AE that is surrounded by the electrically insulating separator layer.
    Type: Application
    Filed: March 13, 2014
    Publication date: September 18, 2014
    Inventors: Murali RAMASUBRAMANIAN, Michael ARMSTRONG, Brian E. BRUSCA, Vladimir DIOUMAEV, Gunther A. KOBLMILLER, Ashok LAHIRI, Laurie J. LAUCHLAN, Harrold J. RUST, III, Nirav S. SHAH, Robert M. SPOTNITZ, James D. WILCOX
  • Publication number: 20140272537
    Abstract: An electrochemical cell including a folded electrode layer and a folded separator, a battery including the electrochemical cell, and methods of forming the electrochemical cell and battery are disclosed. The electrode layer is folded in a first direction and the separator is folded in a second direction, such that the first direction and second direction are orthogonal each other.
    Type: Application
    Filed: March 14, 2013
    Publication date: September 18, 2014
    Applicants: ROBERT BOSCH GMBH, SION POWER CORPORATION
    Inventors: Thomas Kretschmar, Thomas Wöhrle, Martin Tenzer, Nathan Jessen Crum, Ernest Dezso Botos, Lowell Dale Jones
  • Publication number: 20140272559
    Abstract: An electrochemical cell including an integrated electrode structure including a separator and an electrode active material, components thereof, a battery including the electrochemical cell, and methods of forming the components, electrochemical cell, and battery are disclosed. The integrated electrode structure includes a separator and at least on electrode active material.
    Type: Application
    Filed: March 14, 2013
    Publication date: September 18, 2014
    Applicants: ROBERT BOSCH GMBH, SION POWER CORPORATION
    Inventors: Thomas Kretschmar, Ernest Dezso Botos
  • Publication number: 20140272526
    Abstract: A porous separator for a lithium ion battery is disclosed herein. The porous separator includes a non-woven membrane and a porous polymer coating. The porous polymer coating is formed on a surface of the non-woven membrane, or is infused in pores of the non-woven membrane, or is both formed on the surface of the non-woven membrane and infused in pores of the non-woven membrane.
    Type: Application
    Filed: March 14, 2013
    Publication date: September 18, 2014
    Applicant: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventor: Xiaosong Huang
  • Publication number: 20140272565
    Abstract: An electrode structure and its method of manufacture are disclosed. The disclosed electrode structures may be manufactured by depositing a first release layer on a first carrier substrate. A first protective layer may be deposited on a surface of the first release layer and a first electroactive material layer may then be deposited on the first protective layer.
    Type: Application
    Filed: March 13, 2014
    Publication date: September 18, 2014
    Applicants: BASF SE, Sion Power Corporation
    Inventors: Oliver Gronwald, Ruediger Schmidt, Martin Weber, Ingrid Haupt, Ursula Huber-Moulliet, Nicole Janssen, Yuriy V. Mikhaylik, Bala Sankaran, David L. Coleman
  • Patent number: 8835058
    Abstract: A porous polymer battery separator is provided that includes variable porosity along its length. Such battery separators can increase the uniformity of the current density within electrochemical battery cells that may normally experience higher current density and higher temperatures near their terminal ends than they do near their opposite ends. By disposing a variable porosity separator between the electrodes of an electrochemical cell such that its terminal end has a lower porosity than its opposite end, the transport of ions, such as lithium ions, through the separator can be more restricted in normally high current regions and less restricted in normally low current regions, thereby increasing the overall uniformity of current density within the battery cell. Variable porosity battery separators may be produced by a dry-stretching process or by a wet process.
    Type: Grant
    Filed: December 21, 2010
    Date of Patent: September 16, 2014
    Assignee: GM Global Technology Operations LLC
    Inventors: Hamid G. Kia, Xiaosong Huang, Mark W. Verbrugge
  • Publication number: 20140242470
    Abstract: An adhesive resin composition for a secondary battery for bonding a separator for a secondary battery and an electrode for a secondary battery, wherein the composition comprises an adhesive resin having a unit derived from an aromatic vinyl monomer and having a glass transition temperature of 25° C. or lower.
    Type: Application
    Filed: September 24, 2012
    Publication date: August 28, 2014
    Applicant: SUMITOMO CHEMICAL COMPANY, LIMITED
    Inventor: Toshihiko Ogata
  • Patent number: 8815427
    Abstract: A spirally-wound non-aqueous electrolyte secondary battery including a staked electrode assembly is disclosed. The stacked electrode assembly has first and second current collectors facing region disposed at a winding start end and at a winding terminal end, respectively. A positive electrode current collector exposed portion and a negative electrode current collector exposed portion face each other through the separator in each of the first and second current collector facing regions. At least one of the positive or negative electrode current collector exposed portion has a first insulating member formed thereon in the first current collector facing region at the winding start end. At least one of the positive or negative electrode current collector exposed portion has a second insulating member formed thereon in the second current collector facing region at the winding terminal end.
    Type: Grant
    Filed: March 8, 2012
    Date of Patent: August 26, 2014
    Assignee: Sony Corporation
    Inventor: Masaki Machida
  • Patent number: 8815452
    Abstract: The present invention relates to one or more electrode plates, which are installed with current collecting terminals at two or more sides thereof, and joined to an auxiliary conductor made of a material having a conductivity that is higher than that of the electrode plates. Current collecting terminals are installed at two or more sides of the auxiliary conductor, for linking with current collecting terminals installed at two or more sides of the electrode plates, and at least one of linked terminals is used as a general current collecting terminal to output current to an external part or to receive input current from the external part. Finally, insulators installed between the auxiliary conductor and the electrode plates to constitute an electrode unit.
    Type: Grant
    Filed: August 28, 2013
    Date of Patent: August 26, 2014
    Inventor: Tai-Her Yang
  • Publication number: 20140234682
    Abstract: There are provided an electrode assembly, a battery cell including the electrode assembly, and a device including the electrode assembly. The electrode assembly includes a combination of two or more electrode units having the same width and different lengths, wherein the electrode units are stacked so that a stepped portion is formed between the electrode units, and electrodes having different polarities face each other at an interface between the electrode units.
    Type: Application
    Filed: April 25, 2014
    Publication date: August 21, 2014
    Applicant: LG CHEM, LTD.
    Inventors: Sung-Jin Kwon, Ki-Woong Kim, Soon-Ho Ahn, Dong-Myung Kim, Young-Hoon Kim, Sung-Han Yoon, Seung-Min Ryu
  • Patent number: 8808901
    Abstract: An anode protector of a lithium-ion battery and a method for fabricating the same are provided. A passivation protector (110) is formed on a surface of an anode (102) in advance by film deposition, such as atomic layer deposition (ALD). The passivation protector (110) is composed of a metal oxide having three dimensional structures, such as columnar structures. Accordingly, the present invention is provided with effective protection of the anode electrode structure and maintenance of battery cycle life under high-temperature operation.
    Type: Grant
    Filed: March 2, 2012
    Date of Patent: August 19, 2014
    Assignee: National Taiwan University of Science and Technology
    Inventors: Fu-Ming Wang, Hsin-Yi Wang, Chin-Shu Cheng
  • Patent number: 8808923
    Abstract: Disclosed is a separator for a non-aqueous electrolyte secondary battery, the separator including a biaxially-oriented polyolefin porous film including extended-chain crystals and folded-chain crystals, wherein the extended-chain crystals and the folded-chain crystals form a shish-kebab structure. The average distance between the extended-chain crystals adjacent to each other is 1.5 ?m or more and less than 11 ?m, and the average distance between the folded-chain crystals adjacent to each other is 0.3 ?m or more and less than 0.9 ?m. A heat resistant porous film may be laminated on the polyolefin porous film. The heat resistant porous film includes a resin having heat resistance or a melting point higher than a melting point of the polyolefin porous film.
    Type: Grant
    Filed: July 19, 2011
    Date of Patent: August 19, 2014
    Assignee: Panasonic Corporation
    Inventors: Yasushi Nakagiri, Yasuyuki Shibano, Norihiro Yamamoto
  • Patent number: 8808922
    Abstract: An electrode assembly and a secondary battery using the same. In an embodiment, the electrode assembly includes one or more first electrodes each having a first tab provided to one surface thereof, and one or more second electrodes each having a second tab provided to one surface thereof. The second electrodes are alternately stacked with the first electrodes. A separator is interposed between the first and second electrodes and folded a plurality of times so that the same surfaces of the separator face each other. The separator has one or more tab through-holes through which the first and second tabs protrude at folded portions of the separator.
    Type: Grant
    Filed: December 20, 2010
    Date of Patent: August 19, 2014
    Assignee: Samsung SDI Co., Ltd.
    Inventor: Chang-Bum Ahn
  • Publication number: 20140227603
    Abstract: An adhesive resin composition for a secondary battery for bonding a separator for a secondary battery and an electrode for a secondary battery, wherein the composition comprises an adhesive resin, the adhesive resin contains the following (A) and (B), and the phase composed of (A) and (B) has a core shell heterophase structure and/or a sea-island heterophase structure: (A) a resin having a glass transition temperature of ?30° C. to +20° C., (B) a resin having a glass transition temperature 20° C. to 200° C. higher than the glass transition temperature of (A).
    Type: Application
    Filed: September 24, 2012
    Publication date: August 14, 2014
    Inventor: Toshihiko Ogata
  • Publication number: 20140227602
    Abstract: Disclosed is a battery with reduced contact resistance at the contact surfaces between the separator and the electrodes, a battery separator capable of reducing contact resistance with the electrodes, and a production method thereof. The battery includes a positive electrode, a negative electrode, a separator interposed therebetween, and an electrolyte. The separator has a matrix structure of nanofibers formed by electrospinning and has a form of a sheet having a first surface and a second surface opposite thereto. When the average maximum fiber diameter of the nanofibers in the plane direction of the separator is compared between in vicinities of the first and second surfaces and at a center portion in the thickness direction of the separator, average maximum fiber diameters Ds1 and Ds2 of the nanofibers in the vicinity of the first and second surfaces are smaller than an average maximum fiber diameter Dc of the nanofibers at the center portion in the thickness direction of the separator.
    Type: Application
    Filed: January 16, 2013
    Publication date: August 14, 2014
    Applicant: PANASONIC CORPORATION
    Inventors: Hiroto Sumida, Takahiro Kurokawa, Takayoshi Yamaguchi, Takatoshi Mitsushima
  • Publication number: 20140227593
    Abstract: The present disclosure relates to an invention directed to controlling a viscosity of a slurry used to manufacture an electrochemical device, by adjusting a particle diameter of an inorganic matter that is an ingredient of the slurry, so that a sinking rate of the inorganic particles may remarkably slow down and dispersibility may be dramatically improved, and as a result, the content of the inorganic particles may relatively increase and the inorganic particles may be uniformly distributed in a coating layer on a substrate, thereby preventing a reduction in battery performance.
    Type: Application
    Filed: April 22, 2014
    Publication date: August 14, 2014
    Applicant: LG CHEM, LTD.
    Inventors: Joo-Sung Lee, Su-Jin Yoon, Da-Kyung Han, Bo-Kyung Ryu, Jong-Hun Kim
  • Patent number: 8802304
    Abstract: Performance, properties and stability of bifunctional air electrodes may be improved by using modified current collectors, and improving water wettability of air electrode structures. This invention provides information on creating non-corroding, electrically rechargeable, bifunctional air electrodes. In some embodiments, this bifunctional air electrode includes a corrosion-resistant outer layer and an electrically conductive inner layer. In some embodiments, this bifunctional air electrode includes titanium suboxides formed by reducing titanium dioxide. Titanium suboxides may be corrosion-resistant and electrically conductive.
    Type: Grant
    Filed: August 10, 2010
    Date of Patent: August 12, 2014
    Assignee: Eos Energy Storage, LLC
    Inventors: Steven Amendola, Michael Binder, Phillip J. Black, Stefanie Sharp-Goldman, Lois Johnson, Michael Kunz, Michael Oster, Tesia Chciuk, Regan Johnson
  • Patent number: 8795864
    Abstract: A lithium polymer battery including: an electrode assembly including: a first electrode plate including a first electrode current collector electrically connected to a first electrode tab and a first electrode active material layer formed on at least one surface of the first electrode current collector, a second electrode plate including a second electrode current collector that is electrically connected to a second electrode tab and a second active material layer formed on at least one surface of the second electrode current collector, and a separator interposed between the first electrode plate and the second electrode plate; and a case for housing the electrode assembly, wherein the separator is attached to a portion of a first electrode uncoated area of a first electrode uncoated area of the first electrode current collector to prevent a short between the first electrode plate and the second electrode plate.
    Type: Grant
    Filed: June 18, 2012
    Date of Patent: August 5, 2014
    Assignee: Samsung SDI Co., Ltd.
    Inventor: Chang-Bum Ahn
  • Patent number: 8795870
    Abstract: A lithium ion secondary battery includes a cathode and an anode being opposed to each other with a separator in between, and an electrolytic solution. One or more of the cathode, the anode, and the separator contain an organic silicon compound including a compound having a polysilsesquioxane skeleton.
    Type: Grant
    Filed: March 14, 2012
    Date of Patent: August 5, 2014
    Assignee: Sony Corporation
    Inventors: Ichiro Yamada, Tadahiko Kubota
  • Publication number: 20140212728
    Abstract: Slurry for secondary batteries used for manufacturing a porous membrane superior in a thermal shrinkage resistance. Said slurry for secondary batteries comprises non-conductive particles and a water-soluble polymer, wherein the water-soluble polymer is a maleimide-maleic acid copolymer including a structural unit (a) shown by the below general formula (I) and a structural unit (b) shown by the below general formula (II); in which “R1” is hydrogen or a substitution group selected from the group consisting of an alkyl group having a carbon number of 1 to 6, a cycloalkyl group having a carbon number of 3 to 12, a phenyl group and a hydroxyphenyl group, and “X” is a residual group of maleic acid which may be neutralized with an ion other than hydrogen ion, dehydrated or esterified.
    Type: Application
    Filed: September 6, 2012
    Publication date: July 31, 2014
    Applicant: ZEON CORPORATION
    Inventors: Takuya Kaneda, Junnosuke Akiike
  • Publication number: 20140212751
    Abstract: A fabricating method of a unit structure for accomplishing an electrode assembly formed by a stacking method, and an electrochemical cell including the same are disclosed. The fabricating method of the electrode assembly is characterized with fabricating the unit structure by conducting a first process of laminating and forming a bicell having a first electrode/separator/second electrode/separator/first electrode structure, conducting a second process of laminating a first separator on one of the first electrode among two of the first electrodes, and conducting a third process of laminating second separator/second electrode one by one on the other first electrode among the two of the first electrodes.
    Type: Application
    Filed: April 1, 2014
    Publication date: July 31, 2014
    Applicant: LG CHEM, LTD.
    Inventors: Dae Geun KU, Hyuk Su KIM, Jun Woo HUH, Hyang Mok LEE, Chang Bum AHN
  • Publication number: 20140212748
    Abstract: A process includes casting a solution including poly(phenylene oxide), inorganic nanoparticles, a solvent, and a non-solvent on a substrate; and removing the solvent to form a porous film; wherein: the porous film is configured for use as a porous separator for a lithium ion battery.
    Type: Application
    Filed: January 31, 2013
    Publication date: July 31, 2014
    Applicant: UChicago Argonne, LLC
    Inventors: Zhengcheng Zhang, Jung-Je Woo, Khalil Amine
  • Publication number: 20140212765
    Abstract: A valve-regulated lead acid battery comprises an element including a positive electrode plate which retains a positive active material, a negative electrode plate which retains a negative active material, and a separator. An average pore diameter of the negative active material measured by a bubble point method is 0.2 ?m or more and 0.35 ?m or less. An average pore diameter of the separator measured by the bubble point method is 10 to 40 times as large as the average pore diameter of the negative active material.
    Type: Application
    Filed: September 7, 2012
    Publication date: July 31, 2014
    Applicant: GS YUASA INTERNATIONAL LTD.
    Inventors: Aya Harada, Yasuhide Nakayama
  • Publication number: 20140212729
    Abstract: An electrode assembly manufactured by a third method other than a stack folding method or a stack method, and an electrochemical device including thereof are disclosed. The electrode assembly includes at least one radical cell. The radical cell has a four-layered structure obtained by stacking a first electrode, a first separator, a second electrode, and a second separator one by one.
    Type: Application
    Filed: March 28, 2014
    Publication date: July 31, 2014
    Applicant: LG CHEM. LTD.
    Inventors: Ji Won PARK, Seung Jae YOU, Hyang Mok LEE
  • Publication number: 20140205908
    Abstract: A separator for a galvanic element, more particularly a lithium ion cell, includes at least one positive electrode and at least one negative electrode that are configured to be separated by a separator. The separator includes a substrate composed of at least one high-temperature-resistant, fiber-forming polymer that has a melting point above 200° C. The substrate also includes at least one further polymer that has a lower melting point than the high-temperature-resistant polymer of the substrate and that connects the fibers of the high-temperature-resistant polymer.
    Type: Application
    Filed: January 21, 2014
    Publication date: July 24, 2014
    Applicants: Samsung SDI Co., Ltd., Robert Bosch GmbH
    Inventors: Thomas Wöhrle, Markus Kohlberger
  • Patent number: 8778522
    Abstract: Disclosed are ionically conductive membranes for protection of active metal anodes and methods for their fabrication. The membranes may be incorporated in active metal negative electrode (anode) structures and battery cells. In accordance with the invention, the membrane has the desired properties of high overall ionic conductivity and chemical stability towards the anode, the cathode and ambient conditions encountered in battery manufacturing. The membrane is capable of protecting an active metal anode from deleterious reaction with other battery components or ambient conditions while providing a high level of ionic conductivity to facilitate manufacture and/or enhance performance of a battery cell in which the membrane is incorporated.
    Type: Grant
    Filed: December 7, 2012
    Date of Patent: July 15, 2014
    Assignee: PolyPlus Battery Company
    Inventors: Steven J. Visco, Yevgeniy S. Nimon, Bruce D. Katz
  • Patent number: 8771860
    Abstract: A lithium secondary battery provided by the present invention includes a spirally wound electrode body in which a positive electrode sheet and a negative electrode sheet are spirally wound with a separator sheet 40 interposed therebetween, wherein on a sheet surface of at least any one from among the positive electrode sheet, negative electrode sheet, and separator sheet 40 constituting the spirally wound electrode body, a porous layer 60 is formed along a longitudinal direction of the sheet 40, and the porous layer 60 is thicker in a spiral winding direction of the spirally wound electrode body in a winding center portion 62 than in a winding outer portion 64.
    Type: Grant
    Filed: June 11, 2010
    Date of Patent: July 8, 2014
    Assignee: Toyota Jidosha Kabushiki Kaisha
    Inventors: Tomoyoshi Ueki, Yusuke Fukumoto, Harunari Shimamura
  • Publication number: 20140186682
    Abstract: A non-aqueous electrolyte secondary battery of the present invention includes a positive electrode, a negative electrode, and a non-aqueous electrolyte. An insulating layer is provided between the positive electrode and the negative electrode. The insulating layer contains at least one type of hydrogen carbonate selected from a sodium hydrogen carbonate and a potassium hydrogen carbonate. The hydrogen carbonate has an average particle size of 2 to 20 ?m. A content of the hydrogen carbonate is 5 to 80 vol % of the total volume of the insulating layer. The insulating layer has a thickness of 4 to 40 ?m.
    Type: Application
    Filed: March 13, 2012
    Publication date: July 3, 2014
    Applicant: HITACHI, LTD.
    Inventors: Kunihiko Koyama, Toshiyuki Watanabe, Takahiro Furutani, Eri Kojima, Masato Harigae
  • Publication number: 20140186686
    Abstract: A secondary battery in which convection in an electrolyte solution occurs easily is provided. A secondary battery whose electrolyte solution can be replaced is provided. A nonaqueous secondary battery includes a positive electrode, a negative electrode, a separator, and an electrolyte solution, and the separator includes grooves capable of making convection in the electrolyte solution occur easily. The nonaqueous secondary battery has at least one expected installation direction, and the grooves in the separator are preferably formed so as to be perpendicular to an expected installation surface. The exterior body includes a first opening for injection of an inert gas into the exterior body and a second opening for expelling or injection of an electrolyte solution from or into the exterior body. An electrolyte solution replacement apparatus has a function of injecting the inert gas through the first opening and expelling or injecting the electrolyte solution through the second opening.
    Type: Application
    Filed: December 20, 2013
    Publication date: July 3, 2014
    Applicant: SEMICONDUTOR ENERGY LABORATORY CO., LTD.
    Inventors: Minoru TAKAHASHI, Masaaki Hiroki
  • Publication number: 20140186715
    Abstract: A method for manufacturing a polyolefin-based porous separator includes forming a sheet containing a polyolefin-based resin and a diluent, extracting the diluent from the sheet by using an extracting apparatus, and forming a separator by drying the extracted sheet using a drying apparatus provided with an inlet. The shortest distance between an outlet of the extracting apparatus and an inlet of the drying apparatus may be 100 mm or less.
    Type: Application
    Filed: December 28, 2013
    Publication date: July 3, 2014
    Inventors: Jung Seong LEE, Kee Wook KIM, Sang Ho LEE, Yong Bae LEE, Jung Sue JANG, Jun Ho CHUNG, Jae Hyun CHO
  • Publication number: 20140186700
    Abstract: A battery has an anode, a separator adjacent the anode, and a cathode adjacent the separator opposite the anode, the cathode comprising interdigitated stripes of materials, one of the materials forming a pore channel.
    Type: Application
    Filed: December 27, 2012
    Publication date: July 3, 2014
    Applicant: PALO ALTO RESEARCH CENTER INCORPORATED
    Inventors: CHANG-JUN BAE, ERIC J. SHRADER, CORIE LYNN COBB
  • Patent number: 8765307
    Abstract: A stacked nonaqueous electrolyte battery, a method of manufacturing the battery, and a stacking apparatus for the battery are provided. The stacked nonaqueous electrolyte battery includes a plurality of electrode bodies alternately stacked, each of the electrode bodies including an anode and a cathode laminated through a separator. The separator has a raised edge portion leading along an edge portion of one of the anode and the cathode, and the raised edge portions of the plurality of the separators overlap one another.
    Type: Grant
    Filed: January 18, 2008
    Date of Patent: July 1, 2014
    Assignee: Sony Corporation
    Inventor: Takashi Komiya