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Molecular Design Strategies for Electrochemical Behavior of Aromatic Carbonyl Compounds in Organic and Aqueous Electrolytes

机译:有机电解质中芳香族羰基化合物的电化学行为的分子设计策略

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To sustainably satisfy the growing demand for energy, organic carbonyl compounds (OCCs) are being widely studied as electrode active materials for batteries owing to their high capacity, flexible structure, low cost, environmental friendliness, renewability, and universal applicability. However, their high solubility in electrolytes, limited active sites, and low conductivity are obstacles in increasing their usage. Here, the nucleophilic addition reaction of aromatic carbonyl compounds (ACCs) is first used to explain the electrochemical behavior of carbonyl compounds during charge–discharge, and the relationship of the molecular structure and electrochemical properties of ACCs are discussed. Strategies for molecular structure modifications to improve the performance of ACCs, i.e., the capacity density, cycle life, rate performance, and voltage of the discharge platform, are also elaborated. ACCs, as electrode active materials in aqueous solutions, will become a future research hotspot. ACCs will inevitably become sustainable green materials for batteries with high capacity density and high power density.
机译:为了可持续地满足对能量不断增长的需求,由于其高容量,柔性结构,低成本,环境友好,可再生性和普遍适用性,有机羰基化合物(OCC)被广泛地研究了电池的电极活性材料。然而,它们在电解质中的高溶解度,有限的活性位点和低导电性是增加其使用的障碍。这里,首先使用芳族羰基化合物(ACC)的亲核加成反应来解释电荷 - 放电期间羰基化合物的电化学行为,并讨论了ACC的分子结构和电化学性质的关系。还阐述了分子结构修改的策略,以提高ACC的性能,即排放平台的容量密度,循环寿命,速率性能和电压。作为水溶液中的电极活性材料,ACCS将成为未来的研究热点。 ACCS将不可避免地成为具有高容量密度和高功率密度的电池的可持续绿色材料。

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