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公开(公告)号:US20240356030A1
公开(公告)日:2024-10-24
申请号:US18611202
申请日:2024-03-20
申请人: CMBlu Energy AG
发明人: Jan HARTWIG , Peter GEIGLE , Evgeny LARIONOV
CPC分类号: H01M4/60 , C07C41/26 , C07C46/04 , C07C46/08 , H01M4/368 , H01M8/04186 , H01M8/08 , H01M8/188 , H01M8/18 , H01M2300/0002
摘要: The present invention relates to a combination of redox active compounds for use as redox flow battery electrolytes. Further provided herein is a kit comprising the combination, a redox flow batteriy, and a method using the combination, kit and/or redox flow battery of the invention.
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2.
公开(公告)号:US20240258524A1
公开(公告)日:2024-08-01
申请号:US18408128
申请日:2024-01-09
发明人: Young-Keun KIM , Yong-Mook KANG , Ji-Ung CHO , Bum-Chul PARK , Dae-Bum LEE
IPC分类号: H01M4/60 , H01M4/36 , H01M4/52 , H01M10/054 , H01M4/02
CPC分类号: H01M4/60 , H01M4/366 , H01M4/523 , H01M10/054 , H01M2004/021 , H01M2004/027
摘要: The present disclosure relates to an anode active material for a sodium secondary battery, which has a layered crystal structure and is formed of nanoplatelets containing iron oxide having organic anions, and in which the nanoplatelets are provided in plural numbers and formed in a stacking structure spaced apart at a first interval.
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公开(公告)号:US12051806B2
公开(公告)日:2024-07-30
申请号:US17367803
申请日:2021-07-06
申请人: Enevate Corporation
发明人: Younes Ansari , Liwen Ji , Heidi Anderson , Benjamin Park , Vincent Giordani
IPC分类号: H01M10/0525 , H01M4/04 , H01M4/134 , H01M4/1395 , H01M4/38 , H01M4/60 , H01M4/66
CPC分类号: H01M4/60 , H01M4/0404 , H01M4/0471 , H01M4/134 , H01M4/1395 , H01M4/386 , H01M4/661 , H01M10/0525
摘要: Systems and methods for batteries comprising a cathode, an electrolyte, and an anode, where prelithiation reagents are utilized to treat one or more of the anode and cathode. In one embodiment, the prelithiation reagent is a Li-organic complex solution comprising naphthalene and metallic lithium dissolved in an inhibitor-free THF.
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4.
公开(公告)号:US20240243257A1
公开(公告)日:2024-07-18
申请号:US18012388
申请日:2022-06-29
申请人: SOOCHOW UNIVERSITY
发明人: Fengxia GENG
IPC分类号: H01M4/36 , H01M4/02 , H01M4/48 , H01M4/60 , H01M10/0525 , H01M10/054
CPC分类号: H01M4/366 , H01M4/48 , H01M4/60 , H01M10/0525 , H01M10/054 , H01M2004/027
摘要: Disclosed in the present invention are a layered metal oxide/amine composite material, and a preparation method therefor and an application thereof in a magnesium-ion battery. An anionic metal oxide solution and an amine compound solution are mixed to obtain a precipitate; and then the precipitate is dried to obtain a layered metal oxide/amine composite material. By designing a layered metal oxide/amine compound composite material, adjusting the stacking structure of the material, and using the material as a positive electrode active material for a magnesium-ion battery, the problem of slow diffusion of highly charged magnesium ions in a material lattice is solved, the stability of the layered structure is maintained, and the high electrochemical activity of the metal oxide material is maximized.
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公开(公告)号:US20240222606A1
公开(公告)日:2024-07-04
申请号:US18557308
申请日:2022-04-28
发明人: Sho Shibata , Hirotetsu Suzuki , Motohiro Sakata
CPC分类号: H01M4/366 , C01B33/32 , C07F7/1804 , H01M4/386 , H01M4/5825 , H01M4/60 , C01P2006/40 , H01M2004/027 , H01M4/625
摘要: The disclosed negative electrode active material for a nonaqueous electrolyte secondary battery includes active material particles containing silicon, and a surface layer formed on surfaces of the active material particles. The surface layer contains a reaction product of a compound allowed to react so as to form a siloxane bond. The compound includes a structure represented by Si-R1-Si. The R1 is an atomic group having a chain portion including, as constituent elements, an alkylene group and at least one selected from the group consisting of a sulfur atom, an oxygen atom, and a nitrogen atom. The two Si's are each bound with at least one atomic group selected from the group consisting of an alkoxy group having 1 to 6 carbon atoms, and the like.
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公开(公告)号:US11984598B2
公开(公告)日:2024-05-14
申请号:US18338781
申请日:2023-06-21
发明人: Ruofan Wang , Yuto Takagi , Michael McGahan , Vladimir Ouspenski , Gaurav Assat , Chuanping Li
IPC分类号: H01M4/36 , H01M4/505 , H01M4/60 , H01M4/62 , H01M10/0525 , H01M10/0565 , H01M4/02
CPC分类号: H01M4/60 , H01M4/366 , H01M4/505 , H01M4/623 , H01M10/0525 , H01M10/0565 , H01M2004/021 , H01M2300/0082 , H01M2300/0085
摘要: An ion conductive layer can include a hygroscopic ion conductive material, such as a halide-based material. In an embodiment, the ion conductive layer can include an organic material, ammonium halide, or a combination thereof.
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公开(公告)号:US20240079591A1
公开(公告)日:2024-03-07
申请号:US18155852
申请日:2023-01-18
发明人: Qichun Zhang , Chun-Sing Lee , Chenchen Wang , Shen Xu
IPC分类号: H01M4/60 , H01M10/0525 , H01M10/054 , H01M50/109
CPC分类号: H01M4/60 , H01M10/0525 , H01M10/054 , H01M50/109 , H01M2004/027
摘要: An electrode material for an energy storage device including a covalent organic framework includes a plurality of aromatic moieties each linked by at least one thioether linkage. An anode including said electrode material, and an energy storage device having said anode.
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公开(公告)号:US11870073B2
公开(公告)日:2024-01-09
申请号:US17056022
申请日:2019-05-17
发明人: Min-Kyu Song , Xiahui Zhang , Wonkeun Kim , Ji-hoon Jang
IPC分类号: H01M4/583 , H01M10/0525 , H01M4/60 , H01M4/36 , B82Y30/00 , B82Y40/00 , H01M4/02 , H01G11/26 , H01G11/06 , H01M4/86 , H01M12/08 , H01G11/46 , H01G11/36 , H01M4/88 , H01M4/90
CPC分类号: H01M4/583 , H01M4/366 , H01M4/60 , H01M10/0525 , B82Y30/00 , B82Y40/00 , H01G11/06 , H01G11/26 , H01G11/36 , H01G11/46 , H01M4/8605 , H01M4/8673 , H01M4/88 , H01M4/9008 , H01M12/08 , H01M2004/021 , H01M2004/8689 , Y02E60/10
摘要: The embodiments herein provide for an oxygen/air cathode that includes metal-organic frameworks and/or hybrids of metal-organic frameworks and carbon networks. The metal-organic-framework-based Li—O2 cells are operated in humid O2 where water plays a critical role in improving battery performance. Such embodiments not only improve battery performance but also reduces the cost by cycling the Li—O2 batteries in humid oxygen with MOF@CNT hybrid catalysts.
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9.
公开(公告)号:US11831010B2
公开(公告)日:2023-11-28
申请号:US17964649
申请日:2022-10-12
发明人: Eunkyung Cho , Suenghoon Han , Myeong Jun Song , Il To Kim , Kwonnam Sohn , Doo Kyung Yang , Jiwon Kim , Moo Whan Shin
IPC分类号: H01M4/36 , H01M10/0525 , H01M10/0587 , C01B32/05 , H01M4/38 , H01M4/587 , H01M4/60 , H01M4/02
CPC分类号: H01M4/364 , C01B32/05 , H01M4/38 , H01M4/587 , H01M4/60 , H01M10/0525 , C01P2004/03 , C01P2006/12 , C01P2006/14 , C01P2006/40 , H01M2004/028
摘要: A carbon-sulfur composite including a carbonized metal-organic framework (MOF); and a sulfur compound introduced to at least a part of an outside surface and an inside of the carbonized metal-organic framework, wherein the carbonized metal-organic framework has a specific surface area of 2500 m2/g to 4000 m2/g, and the carbonized metal-organic framework has a pore volume of 0.1 cc/g to 10 cc/g, and a method for preparing the same.
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10.
公开(公告)号:US20230352684A1
公开(公告)日:2023-11-02
申请号:US18219122
申请日:2023-07-07
申请人: GUANGDONG BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP EV RECYCLING CO., LTD.
发明人: Shiqing Zhang , Dingshan Ruan , Shenghe Tang , Changdong Li
IPC分类号: H01M4/58 , C01B25/45 , H01M10/0525 , H01M4/36 , H01M4/60
CPC分类号: H01M4/5825 , C01B25/45 , H01M10/0525 , H01M4/366 , H01M4/60 , C01P2006/40 , C01P2004/80 , C01P2004/61 , C01P2004/03 , H01M2004/028
摘要: The present invention provides a preparation method and application of lithium iron phosphate cathode material, comprising the following steps: (1) Dry mixing an iron source, a phosphorus source, a lithium source, a carbon source and additives and fine grinding to obtain a mixed material; (2) Performing first calcination to the mixed material, and then pulverize to obtain the pulverized material; (3) Perform the second calcination to the pulverized material, while introducing a gasifiable organic carbon source, and then cooling to obtain a lithium iron phosphate cathode material. The invention uses high-efficiency mixing equipment for a one-step mixing and fine grinding of the raw materials, followed by the first calcination and pulverizing, and then performing a second calcination. The gasifiable organic carbon source is used to supplement carbon by forming a carbon coating, so that it has a better carbon coating layer and particle morphology.
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