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    • 1. 发明授权
    • Lithium battery protected from intrusion by pointed elements
    • US10147924B2
    • 2018-12-04
    • US13697590
    • 2011-05-25
    • Marc Deschamps
    • Marc Deschamps
    • H01M2/16H01M10/0525H01M10/42
    • The invention relates to a lithium battery, the operation of which is security-protected by the interposition of resilient films. The battery is made up of a battery cell PEN, which comprises a film of an electrolyte E containing a lithium salt between a film P forming a positive electrode and a film N forming a negative electrode, or made up of a stack of battery cells PEN, said stack comprising two terminal battery cells between which are optionally placed one or more intermediate battery cells, said battery being characterized in that it comprises at least two protective films Fp made of a resilient material, at least one of the electrodes of the battery cell or of each terminal battery cell being in contact with a protective film Fp made of a resilient material. In particular, at least two protective films Fp are made of a resilient material having an elongation at break denoted by ame and a thickness denoted by eme, at least one of said protective films Fp in contact with a connection layer, for connecting an electrode, having a thickness emax, said film having a thickness eme such that eme>emax/ame. The invention relates to “lithium” batteries, the negative electrode of which is made of lithium metal, and to “lithium ion” batteries, the negative electrode of which comprises a lithium-ion insertion material.
    • 2. 发明授权
    • Bilayer electrolyte for a lithium battery
    • 用于锂电池的双层电解质
    • US08546022B2
    • 2013-10-01
    • US13853209
    • 2013-03-29
    • Marc Deschamps
    • Marc Deschamps
    • H01M10/0562C08J5/20B29C47/06B32B37/06
    • H01M10/056H01M6/187H01M10/0525H01M2300/0082H01M2300/0094
    • The invention relates to a bilayer polymer electrolyte for a lithium battery. The electrolyte comprises the layers N and P, each composed of a solid solution of an Li salt in a polymer material, the Li salt being the same in both layers, the polymer material content being at least 60% by weight, and the lithium salt content being from 5 to 25% by weight. The polymer material of the layer P contains a solvating polymer and a nonsolvating polymer, the weight ratio of the two polymers being such that the solvating polymer forms a continuous network. The polymer material of the layer N is composed of a solvating polymer and optionally a nonsolvating polymer, the weight ratio of the two polymers being such that the solvating polymer forms a continuous network, and the nonsolvating polymer does not form a continuous network.
    • 本发明涉及一种用于锂电池的双层聚合物电解质。 电解质包括由聚合物材料中的Li盐的固溶体构成的层N和P,两层中的Li盐相同,聚合物材料含量为至少60重量%,锂盐 含量为5〜25重量%。 层P的聚合物材料包含溶剂化聚合物和非共聚聚合物,两种聚合物的重量比使得溶剂化聚合物形成连续网络。 层N的聚合物材料由溶剂化聚合物和任选的非共聚聚合物组成,两种聚合物的重量比使得溶剂化聚合物形成连续网络,并且非共聚聚合物不形成连续网络。
    • 8. 发明申请
    • BILAYER ELECTROLYTE FOR A LITHIUM BATTERY
    • BILAYER电解液用于锂电池
    • US20130216916A1
    • 2013-08-22
    • US13853209
    • 2013-03-29
    • Marc DESCHAMPS, SR.
    • Marc DESCHAMPS, SR.
    • H01M10/056
    • H01M10/056H01M6/187H01M10/0525H01M2300/0082H01M2300/0094
    • The invention relates to a bilayer polymer electrolyte for a lithium battery. The electrolyte comprises the layers N and P, each composed of a solid solution of an Li salt in a polymer material, the Li salt being the same in both layers, the polymer material content being at least 60% by weight, and the lithium salt content being from 5 to 25% by weight. The polymer material of the layer P contains a solvating polymer and a nonsolvating polymer, the weight ratio of the two polymers being such that the solvating polymer forms a continuous network. The polymer material of the layer N is composed of a solvating polymer and optionally a nonsolvating polymer, the weight ratio of the two polymers being such that the solvating polymer forms a continuous network, and the nonsolvating polymer does not form a continuous network.
    • 本发明涉及一种用于锂电池的双层聚合物电解质。 电解质包括由聚合物材料中的Li盐的固溶体构成的层N和P,两层中的Li盐相同,聚合物材料含量为至少60重量%,锂盐 含量为5〜25重量%。 层P的聚合物材料包含溶剂化聚合物和非共聚聚合物,两种聚合物的重量比使得溶剂化聚合物形成连续网络。 层N的聚合物材料由溶剂化聚合物和任选的非共聚聚合物组成,两种聚合物的重量比使得溶剂化聚合物形成连续网络,并且非共聚聚合物不形成连续网络。