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公开(公告)号:US11228026B2
公开(公告)日:2022-01-18
申请号:US16444900
申请日:2019-06-18
IPC分类号: H01M4/36 , H01M10/05 , C23C18/12 , H01M4/02 , C01B7/20 , C01B7/19 , B82Y40/00 , C23C18/00 , C23C18/24 , C23C16/22 , B82Y30/00
摘要: The present disclosure relates to a method of making an electrochemically active material, which comprises metal nanostructures encapsulated in LaF3 shells. The electrochemically active material may be included in an electrode of an F-shuttle battery that includes a liquid electrolyte, which, optionally, allows the F-shuttle batteries to operate at room temperature.
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公开(公告)号:US11581582B2
公开(公告)日:2023-02-14
申请号:US16703654
申请日:2019-12-04
发明人: Qingmin Xu , Christopher J. Brooks , Kaoru Omichi , Ryan K. McKenney , Simon Jones , Victoria Davis , Stephen Munoz , Jeongmin Kim , Keith Billings , Thomas Miller, III , Robert H. Grubbs , William Wolf , Nam Hawn Chou
IPC分类号: H01M10/0569 , H01M4/36 , H01M4/38 , H01M4/58 , H01M10/05 , H01M10/0568 , H01M10/36
摘要: The present disclosure relates to fluoride ion batteries and structures of metal based electrode materials for various fluoride ion batteries. The structures of the metal based electrode materials comprise one or more shells or interfaces, enabling the electrodes to operate at room temperature with a liquid electrolyte.
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公开(公告)号:US20190393490A1
公开(公告)日:2019-12-26
申请号:US16444900
申请日:2019-06-18
摘要: The present disclosure relates to a method of making an electrochemically active material, which comprises metal nanostructures encapsulated in LaF3 shells. The electrochemically active material may be included in an electrode of an F-shuttle battery that includes a liquid electrolyte, which, optionally, allows the F-shuttle batteries to operate at room temperature.
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公开(公告)号:US09975110B1
公开(公告)日:2018-05-22
申请号:US15360312
申请日:2016-11-23
发明人: Nam Hawn Chou , Ryan K. McKenney
CPC分类号: B01J23/72 , B01J35/0013 , B01J35/023 , B01J37/16
摘要: A method for producing metal catalyst nanoparticles with a predetermined and/or narrow particle size distribution, and/or a predetermined size, wherein the method comprising a first quenching step and a second quenching step, which may, at least in part, determine the obtained metal catalyst nanoparticles' particle size distribution and/or size.
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