首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >In situ polymerized Ti3C2Tx/PDA electrode with superior areal capacitance for supercapacitors
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In situ polymerized Ti3C2Tx/PDA electrode with superior areal capacitance for supercapacitors

机译:原位聚合的Ti3C2Tx / PDA电极,具有优异的超级电容器的面积电容

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摘要

To solve the restacking of the Ti3C2Tx nanosheets and destroy of electrode microstructure during cycles and gain high-performance electrode for supercapacitors, Ti3C2Tx/PDA composite film electrode was rationally designed and successfully synthesized by one-step in situ polymerization of dopamine on the surface of the Ti3C2Tx nanosheets. The as-synthesized Ti3C2Tx/PDA composite electrode achieved a superior areal capacitance of 715 mF/cm(2) at a scan rate of 2 mV/s and maintained 95.5% of initial capacitance after 10000 cycles, exhibiting long-term cycling stability. The areal capacitance can be enhanced to 3440 mF/cm(2) when the mass loading increases to 13.6 mg/cm(2). The improved electrochemical performance and outstanding electrochemical stability can be attributed to the effective suppressing the restacking of Ti3C2Tx sheets and increasing interlayer spacing by introducing PDA, which could be beneficial to expose more surface active sites, shorten the diffusion path of electrolyte ions, promote electron transport and fast Faradaic reaction. Our work opens new design space to develop the high performance negative electrode materials. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了解决Ti3C2Tx纳米片的重新堆叠和循环期间电极微结构的破坏,并获得用于超级电容器的高性能电极,Ti3C2Tx / PDA复合膜电极合理设计并通过多巴胺的原位聚合一步法的表面上成功地合成TI3C2TX纳米纸盒。 AS合成的Ti3C2Tx / PDA复合电极以2mV / s的扫描速率达到715mF / cm(2)的优异的面积电容,并在10000次循环后保持95.5%的初始电容,表现出长期循环稳定性。当质量加载增加至13.6mg / cm(2)时,可以增强面积电容至3440mF / cm(2)。改善的电化学性能和出色的电化学稳定性可以归因于有效抑制Ti3C2Tx片材的折续续折叠,并通过引入PDA增加层间间距,这可能有利于曝光更多的表面活性位点,缩短电解质离子的扩散路径,促进电子传输和快速的法拉迪亚反应。我们的工作开辟了新的设计空间,以开发高性能负极材料。 (c)2018年elestvier b.v.保留所有权利。

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