Conductive framework of inverse opal structure for sulfur cathode in lithium-sulfur batteries
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Reaction of Ph3P+C-HR with R1CHO at -78 Deg yielded Ph3P+CHRCHR1O- (I). Subsequent addn. of BuLi gave Ph3P+C-RCHR1O- Li+ (II). Reaction of II with HCl and hydrolysis with tert-BuOK gave .apprx.80% RCH:CHR1 (R = Et, Ph, or C5H11; R1 = Me, Et, or C5H11). Whe ...
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With the aim of improving the rate capability and the safety of nanocrystalline Li4Ti5O12-based high power lithium ion batteries, two high boiling point nitrile-based electrolytes namely, 3-ethoxypropionitrile (CH3CH2OCH2CH2CN, EPN)/1 M LiTFSI and 3-(2,2,2 ...
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LiMn2O4 is one of the important cathode material for rechargeable lithium batteries. Standard ab initio studies within local density approximation (LDA) and generalized gradient approximation (GGA) are not able to reproduce the intrinsic insulating electro ...
The poor electronic conductivity of LiFePO4 has been one of the major issues impeding it from achieving high power and energy density lithium-ion batteries. In this communication, a novel polymer-wiring concept was proposed to improve the conduction of the ...
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A compact energy‐storage system based on redox targeting is proposed, by which insulating LiFePO4 particles can be reversibly charged and discharged by redox shuttle molecules (S; see scheme) even in the absence of conducting additives. The energy density ...