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公开(公告)号:US11674021B2
公开(公告)日:2023-06-13
申请号:US15929885
申请日:2020-05-28
Inventor: Bin Xiao , Christopher Cheung Yec , Han Wang , Jianzhuo Xin , Jifan Li
CPC classification number: C08L19/00 , C08L23/0853 , C08L75/04 , C08K3/26 , C08K2003/2206 , C08K2003/2227 , C08L2201/02
Abstract: Flame retardant composition including: an optionally crosslinked rubber, an intumescent composition comprising a phosphate and a melamine polymer formed by combining melamine, formaldehyde, dicyandiamide, and aluminum hydroxide thereby forming the intumescent composition, a ceramic forming mixture, at least one glass additive, layered silicate nanoparticles, and optionally an antioxidant; and methods of preparation and use thereof.
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公开(公告)号:US10127342B2
公开(公告)日:2018-11-13
申请号:US15093763
申请日:2016-04-08
Inventor: Jianzhuo Xin , Wing Yu Chau , Yingkai Jiang , Yeming Xu , Kwok Keung Ho
IPC: G06G7/54 , G06F17/50 , H01M4/04 , H01M4/131 , H01M4/1391 , H01M4/38 , H01M4/505 , H01M4/525 , H01M4/62 , H01M4/66 , H01M10/0525 , H01M10/0568 , H01M10/0569 , H01M10/0585 , H01M4/02
Abstract: A method of designing and modifying electrode materials for a battery device is disclosed in this invention. The method includes constructing a first principle model for battery electrode material properties estimation and screening. The method also includes applying a structural and compositional modification on the first principle model. In some embodiments, the method includes developing a hybrid physical model to estimate the battery cell cycling behavior with the calculated and experimental parameters. The method and the simulation models have the advantage that both atomic level and physical structure will be considered for the battery electrode and its modified derivatives with small compositional or structural changes. Therefore, both the time consumption and accuracy for battery electrode material designing and modification for specific application requirements can be improved.
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公开(公告)号:US11024788B2
公开(公告)日:2021-06-01
申请号:US16655438
申请日:2019-10-17
Inventor: Xinying Sun , Han Wang , Jianzhuo Xin , Jifan Li
Abstract: The present disclosure provides a thermoelectric generator and methods for fabricating the same. The semiconductor legs and electrodes of the thermoelectric generator are embedded in one or more flexible polymer matrices providing protection to the semiconductor legs and electrodes to maintain good electric contacts among them during bending. Thus, the output power of the thermoelectric generator can be substantially retained even after a large number of bending cycles.
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