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Organic compounds with heteroatoms as overcharge protection additives for lithium cells

机译:杂原子有机化合物作为锂电池的过充保护添加剂

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摘要

Various organic compounds with heteroatoms (N, O, F, Si, P, S) were tested as overcharge protection additives for 4-V class lithium cells. It was found that trimethyl-3,5-xylylsilane exhibited preferable oxidation potential (E_(ox)) as overcharge protection additive, and charge-discharge cycling efficiency (Eff) of lithium anode in electrolyte with arylsilanes was as high as tolyladamantanes, reported previously by us. From room temperature to 60 deg C, E_(ox) of trimethyl-3,5-xylylsilane decreased only 0.07 V. Difference in E_(ox) among regioisomers of tolyltrimethylsilanes is smaller than that among tolyladamantanes. ~1H NMR and UV spectra suggest the steric repulsion between tolyl group and trimethylsilyl group in o-tolyltrimethylsilane is smaller than that of the related substituents of o-tolyladamantane.
机译:测试了具有杂原子的各种有机化合物(N,O,F,Si,P,S)作为4 V级锂电池的过充电保护添加剂。发现三甲基-3,5-二甲苯基硅烷作为过充电保护添加剂表现出较好的氧化电位(E_(ox)),并且锂阳极在含芳基硅烷的电解质中的充放电循环效率(Eff)与甲苯基金刚烷类相同。被我们。从室温到60℃,三甲基-3,5-二甲苯基硅烷的E_(ox)仅降低0.07V。甲苯基三甲基硅烷的区域异构体之间的E_(ox)的差异小于甲苯基金刚烷之间的差异。 〜1 H NMR和UV光谱表明,邻甲苯基三甲基硅烷中甲苯基和三甲基甲硅烷基之间的空间排斥小于邻甲苯基金刚烷的相关取代基的空间排斥。

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