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Few-Layered Boronic Ester Based Covalent Organic Frameworks/Carbon Nanotube Composites for High-Performance K-Organic Batteries

机译:基于少数层的硼态酯基共价有机框架/碳纳米管复合材料,用于高性能K-有机电池

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摘要

Organic electrodes for low-cost potassium ion batteries (PIBs) are attracting more interest by virtue of their molecular diversity, environmental friendliness, and operation safety. But the sluggish potassium diffusion kinetics, dissolution in organic electrolyte, poor electronic conductivity, and low reversible capacities are several drawbacks compared with inorganic counterparts. Herein, the boronic ester based covalent organic framework (COF) material is successfully prepared on the exterior surface of carbon nanotubes (CNTs) via rational design of the organic condensation reaction and used as an anode material for PIBs. The few-layered structure of COF-10@CNT can provide more exposed active sites and fast K+ kinetics. It exhibits ultrahigh potassium storage performances (large reversible capacities of 288 mAh g(-1) after 500 cycles at 0.1 A g(-1) and 161 mAh g(-1) after 4000 cycles at 1 A g(-1)), which is superior to previous organic electrodes and most inorganic electrodes. Moreover, the K-storage mechanism is proposed to be pi-cation interaction between K+ and conjugated pi-electrons of benzene rings.
机译:用于低成本钾离子电池(PIB)的有机电极通过其分子多样性,环境友好和操作安全性而吸引更多的兴趣。但是,与无机对应物相比,有机电解质的缓慢扩散动力学,有机电解质中的溶解,电子导电性差和低可逆容量是几个缺点。这里,通过有机缩合反应的合理设计在碳纳米管(CNT)的外表面上成功地制备了硼膦酯基的共价有机骨架(COF)材料,并用作PIBS的阳极材料。 COF-10 @ CNT的少数层结构可提供更暴露的活性位点和快速k +动力学。它在0.1Ag(-1)和161mAhg(-1)下在1Ag(-1))下,它展现出超高钾储存性能(5008mAhg(-1)的大量可逆容量为288mAhg(-1),这优于先前的有机电极和大多数无机电极。此外,提出了K储存机理是K +与苯环的缀合的PI-电子之间的阳离子相互作用。

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