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首页> 外文期刊>Angewandte Chemie >Switching between Local and Global Aromaticity in a Conjugated Macrocycle for High-Performance Organic Sodium-Ion Battery Anodes
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Switching between Local and Global Aromaticity in a Conjugated Macrocycle for High-Performance Organic Sodium-Ion Battery Anodes

机译:在共轭宏循环中局部和全局芳香性的切换,用于高性能有机钠离子电池阳极

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摘要

Aromatic organic compounds can be used as electrode materials in rechargeable batteries and are expected to advance the development of both anode and cathode materials for sodium-ion batteries (SIBs). However, most aromatic organic compounds assessed as anode materials in SIBs to date exhibit significant degradation issues under fast-charge/discharge conditions and unsatisfying long-term cycling performance. Now, a molecular design concept is presented for improving the stability of organic compounds for battery electrodes. The molecular design of the investigated compound, [2.2.2.2]paracyclophane-1,9,17,25-tetraene (PCT), can stabilize the neutral state by local aromaticity and the doubly reduced state by global aromaticity, resulting in an anode material with extraordinarily stable cycling performance and outstanding performance under fast-charge/discharge conditions, demonstrating an exciting new path for the development of electrode materials for SIBs and other types of batteries.
机译:芳族有机化合物可用作可充电电池中的电极材料,并且预期推动钠离子电池(SIBs)的阳极和阴极材料的发育。 然而,在SIBs中评估的大多数芳族有机化合物迄今为止在迄今为止的阳极材料表现出在快速/放电条件下具有显着的降解问题和不满意的长期循环性能。 现在,提出了一种用于改善电池电极的有机化合物的稳定性的分子设计概念。 研究化合物的分子设计,[2.2.2.2]截谱 - 1,9,17,25-四烯(PCT)可以通过局部芳香性稳定中性状态,并通过全局芳香性通过双重降低的状态,导致阳极材料 在快速/放电条件下具有非常稳定的循环性能和出色的性能,展示了用于SIB和其他类型的电池的电极材料的令人兴奋的新路径。

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