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Electrochemically active crystalline mesoporous covalent organic frameworks on carbon nanotubes for synergistic lithium-ion battery energy storage

机译:碳纳米管上的电化学活性结晶介孔共价有机骨架用于锂离子电池的协同储能

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摘要

Organic batteries free of toxic metal species could lead to a new generation of consumer energy storage devices that are safe and environmentally benign. However, the conventional organic electrodes remain problematic because of their structural instability, slow ion-diffusion dynamics, and poor electrical conductivity. Here, we report on the development of a redox-active, crystalline, mesoporous covalent organic framework (COF) on carbon nanotubes for use as electrodes; the electrode stability is enhanced by the covalent network, the ion transport is facilitated by the open meso-channels, and the electron conductivity is boosted by the carbon nanotube wires. These effects work synergistically for the storage of energy and provide lithium-ion batteries with high efficiency, robust cycle stability, and high rate capability. Our results suggest that redox-active COFs on conducting carbons could serve as a unique platform for energy storage and may facilitate the design of new organic electrodes for high-performance and environmentally benign battery devices.
机译:不含有毒金属物质的有机电池可能会导致新一代的消费者能量存储设备安全且对环境无害。然而,常规的有机电极由于其结构的不稳定性,缓慢的离子扩散动力学和差的电导率而仍然存在问题。在这里,我们报道了在碳纳米管上用作电极的氧化还原活性,结晶,介孔共价有机骨架(COF)的发展。共价网络增强了电极的稳定性,开放的介观通道促进了离子的传输,碳纳米管导线增强了电子的导电性。这些效应协同作用以存储能量,并为锂离子电池提供高效,稳定的循环稳定性和高倍率性能。我们的结果表明,导电碳上的氧化还原活性COF可以作为能量存储的独特平台,并且可以促进高性能和环境友好型电池设备的新型有机电极的设计。

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