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Pore-size dominated electrochemical properties of covalent triazine frameworks as anode materials for K-ion batteries

机译:共价三嗪骨架作为K离子电池阳极材料的孔大小主导的电化学性能

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摘要

Two homologous covalent triazine frameworks (CTFs) have been developed for the first time as anode materials for high performance K-ion batteries (KIBs). The two-dimensional sheet-like structure as well as the regular channels in CTFs enable the process of intercalation/deintercalation of K-ions into/from the CTF interlayers reversibly. Particularly, a size effect of the porous structure is found to dominate the K-ion storage behavior. CTF-0 with a smaller pore size displays a higher K-ion storage capacity than CTF-1. Molecular simulations reveal the operation mechanism, showing that the depotassiation process in CTF-0 is exothermic while the depotassiation in CTF-1 is endothermic, which makes the deintercalation of K-ions from CTF-0 more feasible than from CTF-1 and contributes to the higher reversible capacity of CTF-0. This work provides a promising strategy for rational design of high-performance organic anode materials by structural modulation at the molecular scale.
机译:首次开发了两个同源的共价三嗪骨架(CTF)作为高性能K离子电池(KIB)的阳极材料。二维片状结构以及CTF中的规则通道使K离子可逆地插入/离开CTF中间层的过程成为可能。特别地,发现多孔结构的尺寸效应决定了K离子的储存行为。孔径较小的CTF-0比CTF-1具有更高的K离子存储容量。分子模拟揭示了其运行机理,表明CTF-0中的去离子化过程是放热的,而CTF-1中的去离子化过程是吸热的,这使得从CTF-0脱除K离子比从CTF-1脱除更可行,并且有助于CTF-0的可逆容量更高。这项工作为通过分子尺度上的结构调节合理设计高性能有机阳极材料提供了有希望的策略。

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