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    • 1. 发明申请
    • LONG-TERM ENERGY STORAGE ASSEMBLY COMPRISING AN INTERMEDIATE CONNECTION PART
    • 长期能源储存包括中间连接部分
    • US20140368972A1
    • 2014-12-18
    • US14241441
    • 2012-08-29
    • Philippe AzaisErwan Vigneras
    • Philippe AzaisErwan Vigneras
    • H01G11/82H01G11/84H01G11/18
    • H01G11/82H01G9/12H01G11/18H01G11/84Y02E60/13Y10T29/417
    • The invention relates to an electrical energy storage assembly comprising an envelope and a capacitive element (30) contained in the envelope, said envelope comprising: at least one side wall (22); and two bottom walls (41) each located at an end of the side wall. Said storage assembly comprises at least one electroconductive intermediate connection part (50) to be arranged between the capacitive element and a bottom wall (41), in addition to a covering plate (51) for covering the end of the capacitive element (20), said covering plate (51) including at least one vent (53) for the passage of a fluid. The covering plate (51) is fixed to the capacitive element in such a way as to be in electrical contact therewith, and the intermediate connection part (50) is also fixed to the envelope in certain areas enabling a deformation of the bottom wall in relation to the intermediate connection part.
    • 本发明涉及一种电能存储组件,其包括封套和容纳在外壳中的电容元件(30),所述外壳包括:至少一个侧壁(22); 和两个位于侧壁端部的底壁(41)。 除了用于覆盖电容元件(20)的端部的覆盖板(51)之外,所述存储组件还包括至少一个要布置在电容元件和底壁(41)之间的导电中间连接部分(50) 所述覆盖板(51)包括用于流体通过的至少一个通风口(53)。 覆盖板(51)以与其电接触的方式固定在电容元件上,并且中间连接部件(50)也在某些区域固定在外壳上,从而能够使底壁变形 到中间连接部。
    • 9. 发明申请
    • METHOD FOR ASSEMBLING A HYBRID LITHIUM SUPERCAPACITOR
    • 用于组装混合超临界二氧化碳的方法
    • US20140325807A1
    • 2014-11-06
    • US14119570
    • 2012-04-17
    • Meriem AnoutiDaniel LemordantGrzegorz LotaCeline Moueza-DecauxEncarnacion Raymundo-PineroFrancois BeguinPhilippe Azais
    • Meriem AnoutiDaniel LemordantGrzegorz LotaCeline Moueza-DecauxEncarnacion Raymundo-PineroFrancois BeguinPhilippe Azais
    • H01G11/84
    • H01G11/84H01G11/62Y02E60/13Y10T29/417
    • The invention relates to a method for developing a hybrid supercapacitor, said method including: at least a step of assembling together a negative electrode, made of at least one non-porous carbon material, and a positive electrode, made of at least one porous carbon material, said electrodes being separated from each other by means of at least one separator impregnated with a liquid electrolyte containing at least one lithium salt dissolved in at least one solvent; and then at least one first charging step, wherein said method is characterized in that: a) the lithium-ion concentration in the liquid electrolyte, before the first charging step, is greater than or equal to 1.6 mol/L; b) at least 50 wt % of the lithium salt of the liquid electrolyte contains a salt released from among LiTPSI and the derivatives there of; c) at least 80 vol % of the solvent of the liquid electrolyte contains a solvent selected from among cyclic alkyl carbonates, acyclic alkyl carbonates, lactones, esters, oxalenes, and the mixtures thereof, it being understood then at least 20 vol % of said solvent contains ethylene carbonate; d) the porous carbon material of the positive electrode is selected from among materials, the mean size of the pores of which is greater than 0.7 nm and which has a specific surface area of more than 700 m2/g; e) the non-porous carbon material of the negative electrode is selected from among materials capable of inserting
    • 本发明涉及一种用于开发混合超级电容器的方法,所述方法包括:将由至少一种无孔碳材料制成的负极和由至少一种多孔碳制成的正极组装在一起的至少一个步骤 所述电极通过至少一个浸渍有溶解在至少一种溶剂中的至少一种锂盐的液体电解质的隔离物彼此分离; 然后至少一个第一充电步骤,其中所述方法的特征在于:a)在第一充电步骤之前,液体电解质中的锂离子浓度大于或等于1.6mol / L; b)至少50wt%的液体电解质的锂盐含有从LiTPSI及其衍生物中释放的盐; c)至少80体积%的液体电解质的溶剂含有选自环烷基碳酸酯,无环烷基碳酸酯,内酯,酯,草酸及其混合物的溶剂,但应理解的是,所述溶剂的至少20体积% 溶剂含有碳酸亚乙酯; d)正极的多孔碳材料选自其孔的平均尺寸大于0.7nm并具有大于700m 2 / g的比表面积的材料; e)负极的无孔碳材料选自能够插入的材料