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具有赝电容特性的笼状CoSe@N掺杂碳气凝胶作为具有优异倍率性能和循环稳定性的钠离子电池先进材料

Cagelike CoSe@N-Doped Carbon Aerogels with Pseudocapacitive Properties as Advanced Materials for Sodium-Ion Batteries with Excellent Rate Performance and Cyclic Stability.

作者信息

Pan Yuelei, Cheng Xudong, Gao Mengyao, Fu Yanbao, Feng Jun, Gong Lunlun, Ahmed Hoda, Zhang Heping, Battaglia Vincent S

机构信息

State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230027, P. R. China.

Energy Storage and Distributed Resources Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 29;12(30):33621-33630. doi: 10.1021/acsami.0c06296. Epub 2020 Jul 14.

Abstract

Electrochemical conversion reaction based electrodes offer a high sodium storage capacity in rechargeable batteries by utilizing the variable valence states of transition metals. Thus, transition metal chalcogenides (TMCs) as such materials have been intensively investigated in recent years to explore the possibilities of practical application in rechargeable sodium-ion batteries; however, it is hindered by poor rate performance and a high-cost preparation method. In addition, some issues in regards to conversion reactions remain poorly understood, including incomplete reversible reaction processes, polarization, and hysteresis. Herein, a novel cagelike CoSe@N-doped carbon aerogels hybrid composite was designed and prepared by a facile and high-efficiency sol-gel technology. Benefiting from the surface engineering optimization, high charge transfer, and low-energy diffusion barrier, the CoSe@N-doped carbon aerogels exhibit a high pseudocapacitive property. Most importantly, the CoSe anode has been carefully investigated at different discharge/charge states by X-ray absorption near edge spectroscopy technologies and density functional theory (DFT) simulations, which deeply reveal the capacity fading mechanism and phase transition behavior.

摘要

基于电化学转换反应的电极通过利用过渡金属的可变价态,在可充电电池中提供高钠存储容量。因此,作为这类材料的过渡金属硫族化合物(TMCs)近年来受到了深入研究,以探索其在可充电钠离子电池中的实际应用可能性;然而,其倍率性能较差和制备方法成本高阻碍了这一应用。此外,关于转换反应的一些问题仍未得到充分理解,包括不完全可逆反应过程、极化和滞后现象。在此,通过简便高效的溶胶 - 凝胶技术设计并制备了一种新型笼状CoSe@N掺杂碳气凝胶杂化复合材料。受益于表面工程优化、高电荷转移和低能量扩散势垒,CoSe@N掺杂碳气凝胶表现出高赝电容性能。最重要的是,通过X射线吸收近边光谱技术和密度泛函理论(DFT)模拟,对CoSe负极在不同充放电状态下进行了仔细研究,深入揭示了容量衰减机制和相变行为。

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