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The Progress and Prospect of Tunable Organic Molecules for Organic Lithium-Ion Batteries

机译:有机锂离子电池可调谐有机分子的进展与展望

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摘要

Compared to inorganic electrodes, organic materials are regarded as promising electrodes for lithium-ion batteries (LIBs) due to the attractive advantages of light elements, molecular-level structural design, fast electron/ion transferring, favorable environmental impacts, and flexible feature, etc. Not only specific capacities but also working potentials of organic electrodes are reasonably tuned by polymerization, electron-donating/withdrawing groups, and multifunctional groups as well as conductive additives, which have attracted intensive attention. However, organic LIBs (OLIBs) are also facing challenges on capacity loss, side reactions, electrode dissolution, low electronic conductivity, and short cycle life, etc. Many strategies have been applied to tackle those challenges, and many inspiring results have been achieved in the last few decades. In this review, we have introduced the basic concepts of LIBs and OLIBs, followed by the typical cathode and anode materials with various physicochemical properties, redox reaction mechanisms, and evolutions of functional groups. Typical charge-discharge behaviors and molecular structures of organic electrodes are displayed. Moreover, effective strategies on addressing problems of organic electrodes are summarized to give some guidance on the synthesis of optimized organic electrodes for practical applications of OLIBs.
机译:与无机电极相比,有机材料因其轻元素、分子级结构设计、快速电子/离子转移、良好的环境影响和柔性等优点,被认为是锂离子电池(LIB)的有前途的电极,聚合反应、给电子/吸电子基团、多官能团以及导电添加剂不仅合理地调节了有机电极的比容量,还合理地调节了电极的工作电位,引起了人们的广泛关注。然而,有机锂离子电池(OLIB)也面临着容量损失、副反应、电极溶解、低导电性和短循环寿命等挑战。许多策略已被应用于应对这些挑战,并在过去几十年中取得了许多鼓舞人心的成果。在这篇综述中,我们介绍了LIBs和OLIB的基本概念,接着介绍了具有各种物理化学性质、氧化还原反应机制和官能团演变的典型阴极和阳极材料。展示了有机电极的典型充放电行为和分子结构。此外,还总结了解决有机电极问题的有效策略,以期为OLIBs的实际应用提供优化有机电极的合成指导。

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