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Computational Electrochemistry Study of Derivatives of Anthraquinone and Phenanthraquinone Analogues:the Substitution Effect

机译:蒽醌和邻苯二酚类似物衍生物的计算电化学研究:取代效应

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摘要

The substituent effect on fused heteroaromatic anthraquinone and phenanthraquinone are investigated by density functional calculations to determine some guidelines for designing potential cathode materials for rechargeable Li-ion batteries. The calculated redox potentials of the quinone derivatives change monotonically with increasing number of substitutions. Full substitution with electron-withdrawing groups brings the highest redox potential; however, mono-substitution results in the largest mass energy density. Carbonyl groups are the most favorable active Li-binding sites; moreover, intramolecular lithium bonds can be formed between Li atoms and electronegative atoms from the substituent groups. The lithium bonds increase the redox potential by improving the thermodynamic stabilization of the lithiation derivatives. Furthermore, the calculation of nucleus-independent chemical shift indicates that the derivatives with Li-bound carbonyl groups are more stable than the bare derivatives.
机译:通过密度泛函计算研究了取代基对稠合杂芳族蒽醌和菲蒽醌的影响,以确定设计可充电锂离子电池潜在阴极材料的一些准则。醌衍生物的计算出的氧化还原电势随着取代数目的增加而单调变化。吸电子基团的完全取代带来最高的氧化还原电位。但是,单取代导致最大的质量能密度。羰基是最有利的活性Li结合位点;而且,可以由取代基在Li原子和负电性原子之间形成分子内锂键。锂键通过改善锂化衍生物的热力学稳定性来增加氧化还原电势。此外,计算独立于核的化学位移表明,具有Li结合的羰基的衍生物比裸衍生物更稳定。

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