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公开(公告)号:US11865636B2
公开(公告)日:2024-01-09
申请号:US16783910
申请日:2020-02-06
发明人: Jianchao Ye , John Roehling , Jae Hyuck Yoo
IPC分类号: B23K26/0622 , H01M8/124 , H01S3/102 , B23K103/00
CPC分类号: B23K26/0622 , H01M8/124 , B23K2103/52 , H01S3/1024
摘要: The present disclosure relates to a system for laser processing of a ceramic electrolyte material. The system may include a controller, a laser responsive to the controller for generating a beam, and a beam forming subsystem. The beam forming subsystem controls a parameter of the beam generated by the laser. The beam forming subsystem further controls the beam to provide a laser fluence sufficient to produce densification of the ceramic electrolyte material.
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公开(公告)号:US20230352714A1
公开(公告)日:2023-11-02
申请号:US18221033
申请日:2023-07-12
摘要: In an aspect, an electrochemical cell comprises: a positive electrode; a negative electrode; and a solid state electrolyte in ionic communication with the positive electrode and the negative electrode; wherein: the electrolyte is characterized by formula (FX1): MPS3 (FX1); wherein M is one or more metal cations and optionally metal cation vacancies; and wherein at least one of said one or more metal cations is a divalent cation; the electrolyte is characterized by a divalent ion conductivity; and the electrolyte is electrically insulating. The solid state electrolyte is optionally not an electrocatalyst material or does not function as an electrocatalyst in the electrochemical cell during operation (e.g., charging and/or discharging) of the electrochemical cell. The solid state electrolyte is optionally not an electrode or does not function as an electrode in the electrochemical cell during operation (e.g., charging and/or discharging) of the electrochemical cell.
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公开(公告)号:US20230352206A1
公开(公告)日:2023-11-02
申请号:US18347034
申请日:2023-07-05
CPC分类号: H01B1/08 , H01B3/10 , H01B13/003 , H01M8/124 , H01M4/04 , H01M6/40 , G02B1/118 , H10K71/211 , B82Y30/00
摘要: Aspects relate to patterned nanostructures having a feature size not including film thickness of below 5 microns. The patterned nanostructures are made up of nanoparticles having an average particle size of less than 100 nm. A nanoparticle composition, which, in some cases, includes a binder, is applied to a substrate. A patterned mold used in concert with electromagnetic radiation function to manipulate the nanoparticle composition in forming the patterned nanostructure. In some embodiments, the patterned mold nanoimprints a pattern onto the nanoparticle composition and the composition is cured through UV or thermal energy. Three-dimensional patterned nanostructures may be formed. A number of patterned nanostructure layers may be prepared and joined together. In some cases, a patterned nanostructure may be formed as a layer that is releasable from the substrate upon which it is initially formed. Such releasable layers may be arranged to form a three-dimensional patterned nanostructure for suitable applications.
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公开(公告)号:US11749825B2
公开(公告)日:2023-09-05
申请号:US16740035
申请日:2020-01-10
CPC分类号: H01M8/124 , H01M12/02 , H01M4/86 , H01M2004/027 , H01M2004/028
摘要: In an aspect, an electrochemical cell comprises: a positive electrode; a negative electrode; and a solid state electrolyte in ionic communication with the positive electrode and the negative electrode; wherein: the electrolyte is characterized by formula (FX1): MPS3 (FX1); wherein M is one or more metal cations and optionally metal cation vacancies; and wherein at least one of said one or more metal cations is a divalent cation; the electrolyte is characterized by a divalent ion conductivity; and the electrolyte is electrically insulating. The solid state electrolyte is optionally not an electrocatalyst material or does not function as an electrocatalyst in the electrochemical cell during operation (e.g., charging and/or discharging) of the electrochemical cell. The solid state electrolyte is optionally not an electrode or does not function as an electrode in the electrochemical cell during operation (e.g., charging and/or discharging) of the electrochemical cell.
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公开(公告)号:US20180309142A1
公开(公告)日:2018-10-25
申请号:US16022024
申请日:2018-06-28
发明人: Hee Sung YOON , Ungyu PAIK , Inyoung Jang , Chanho KIM , Sungmin KIM
IPC分类号: H01M8/04014 , H01M8/0258 , H01M8/2404 , H01M8/12
CPC分类号: H01M8/04014 , H01M8/0258 , H01M8/0267 , H01M8/04007 , H01M8/12 , H01M8/124 , H01M8/2404 , H01M8/248
摘要: Provided is a gas heating unit for a fuel cell. The gas heating unit includes a supply gas inlet for receiving a supply gas before pre-heating, a plurality of pre-heating plates having openings and configured to pre-heat the supply gas, a plurality of support plates supporting the pre-heating plates and having openings, and a supply gas outlet for supplying the pre-heated supply gas to a fuel cell stack module. The pre-heating plates and the support plates are alternately stacked, and the openings of the pre-heating plates and the openings of the support plates provide a path to the supply gas.
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公开(公告)号:US10044049B2
公开(公告)日:2018-08-07
申请号:US14641085
申请日:2015-03-06
申请人: TOTO LTD.
发明人: Shuhei Tanaka , Naoki Watanabe , Nobuo Isaka , Masaki Sato , Takuya Hoshiko , Osamu Okamoto , Shigeru Ando , Seiki Furuya , Yutaka Momiyama , Yasuo Kakinuma , Kiyoshi Hayama
IPC分类号: H01M8/02 , H01M8/12 , H01M8/0247 , H01M8/2404 , H01M8/0286 , H01M8/0271 , H01M8/0256 , H01M8/243 , H01M4/70 , H01M4/64 , H01M8/2425 , H01M8/2457 , H01M8/0297 , H01M8/124 , H01M8/0206 , H01M8/0232
CPC分类号: H01M8/0247 , H01M4/64 , H01M4/70 , H01M8/0206 , H01M8/0232 , H01M8/0256 , H01M8/0271 , H01M8/0286 , H01M8/0297 , H01M8/12 , H01M8/124 , H01M8/2404 , H01M8/2425 , H01M8/243 , H01M8/2457 , H01M2008/1293 , H01M2300/0074 , Y02P70/56
摘要: To provide SOFC and method for manufacturing same, capable of preventing breakage of fuel cell electrodes, and of securing an electrical connection between fuel cells and a current collector. SOFC 1 comprising a cell array composed of fuel cells 16, and current collector 82 connected to electrodes formed on fuel cells 16, wherein current collector 82 is a metal plate on which attaching holes 84 are formed; elastic pieces 84a are provided on each attaching hole 84; current collector 82 is attached to the cell array using elastic pieces 84a, by the insertion of fuel cell 16 into attaching holes 84; and elastic pieces 84a are affixed to fuel cells 16 by electrode protective layer 152 so that the positions of elastic pieces 84a are not displaced relative to the electrodes on fuel cells 16.
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公开(公告)号:US20180159149A1
公开(公告)日:2018-06-07
申请号:US15890230
申请日:2018-02-06
申请人: LG CHEM, LTD.
发明人: Jong Woo KIM , Kwangwook CHOI , Dong Oh SHIN , Changseok RYOO , Gyunjoong KIM
IPC分类号: H01M8/0282 , H01M8/1004 , C04B35/486 , C04B35/50 , H01M4/88 , H01M8/124 , H01M8/1246 , H01M8/1253 , H01M8/126
CPC分类号: H01M8/0282 , C04B35/486 , C04B35/50 , C04B2235/3224 , C04B2235/3225 , C04B2235/3229 , C04B2235/365 , H01M4/8889 , H01M8/1004 , H01M8/124 , H01M8/1246 , H01M8/1253 , H01M8/126 , H01M8/1266 , H01M2008/1293 , H01M2300/0074 , H01M2300/0077 , Y02P70/56
摘要: The present specification relates to a solid oxide fuel cell and a method for manufacturing the same.
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公开(公告)号:US09890048B2
公开(公告)日:2018-02-13
申请号:US15178228
申请日:2016-06-09
申请人: Board of Regents, The University of Texas System , Universidade Do Porto , LNEG-LABORATORIO NACIONAL DE ENEGIA E GEOLOGIA
发明人: John B. Goodenough , Maria Helena Sousa Soares De Oliveira Braga , Jose Jorge Do Amaral Ferreira , Preetam Singh
IPC分类号: H01G9/02 , C01B33/32 , H01G11/56 , H01M8/124 , H01M10/0562 , C01B11/00 , C01B25/30 , C01B25/32 , C01B33/24 , C01D5/02 , C01F11/46 , H01G11/62 , H01G11/84 , H01M8/1016 , H01M10/36 , C03C1/00 , C03C4/18
CPC分类号: C01B33/32 , C01B11/00 , C01B25/306 , C01B25/322 , C01B33/24 , C01D5/02 , C01F11/462 , C03C1/006 , C03C4/18 , H01G11/56 , H01G11/62 , H01G11/84 , H01M8/1016 , H01M8/124 , H01M10/0562 , H01M10/36 , H01M2300/0071 , H01M2300/008 , Y02E60/13 , Y02P70/56 , Y02T10/7022
摘要: The disclosure provides a water-solvated glass/amorphous solid that is an ionic conductor-an electronic insulator, and a dielectric as well as electrochemical devices and processes that use this material, such as batteries, including rechargeable batteries, fuel cells, capacitors, electrolysis cells, and electronic devices. The electrochemical devices and products use a combination of ionic and electronic conduction as well as internal electric dipoles.
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公开(公告)号:US20170237087A1
公开(公告)日:2017-08-17
申请号:US15434110
申请日:2017-02-16
发明人: Young-Jun Sohn , Minjin Kim , Seung-Gon Kim , Gu-Gon Park , Byungchan Bae , Sung-Dae Yim , Seok-Hee Park , Tae-Hyun Yang , Won-Yong Lee , Chang-Soo Kim
IPC分类号: H01M8/04007 , H01M8/1231 , H01M8/248 , H01M8/124 , H01M8/2428 , H01M8/2457
CPC分类号: H01M8/124 , H01M8/0267 , H01M8/04074 , H01M8/2404 , H01M8/2428 , H01M8/2457 , H01M8/2483 , H01M2008/1095 , Y02P70/56
摘要: A high-temperature polymer electrolyte membrane fuel cell stack may include a plurality of cell units; a cooling assembly including a plurality of first independent cooling plates disposed on top surfaces of the plurality of cell units, respectively, and a plurality of second independent cooling plates disposed on bottom surfaces of the plurality of cell units, respectively; and a support assembly configured to support the plurality of cell units and the cooling assembly.
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公开(公告)号:US09673469B2
公开(公告)日:2017-06-06
申请号:US14473608
申请日:2014-08-29
CPC分类号: H01M8/1213 , H01M4/8621 , H01M4/8657 , H01M4/8807 , H01M4/8885 , H01M4/9066 , H01M8/124 , H01M8/126 , H01M8/22 , H01M2004/8684 , H01M2008/1293 , H01M2300/0074 , H01M2300/0077 , H01M2300/0091 , Y02E60/525 , Y02P70/56
摘要: Electrode materials systems for planar solid oxide fuel cells with high electrochemical performance including anode materials that provide exceptional long-term durability when used in reducing gases and cathode materials that provide exceptional long-term durability when used in oxygen-containing gases. The anode materials may comprise a cermet in which the metal component is a cobalt-nickel alloy. These anode materials provide exceptional long-term durability when used in reducing gases, e.g., in SOFCs with sulfur contaminated fuels. The cermet also may comprise a mixed-conducting ceria-based electrolyte material. The anode may have a bi-layer structure. A cerium oxide-based interfacial layer with mixed electronic and ionic conduction may be provided at the electrolyte/anode interface.
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