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等离子体处理的超薄三元FePSe纳米片作为高效锌空气电池的双功能电催化剂

Plasma-Treated Ultrathin Ternary FePSe Nanosheets as a Bifunctional Electrocatalyst for Efficient Zinc-Air Batteries.

作者信息

Hao Yanan, Huang Aijian, Han Silin, Huang Hongjiao, Song Junnan, Sun Xiaoli, Wang Zhiguo, Li Linlin, Hu Feng, Xue Jianjun, Peng Shengjie

机构信息

Jiangsu Key Laboratory of Materials and Technology for Energy Conversion, College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, P. R. China.

School of Electronics Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 1;12(26):29393-29403. doi: 10.1021/acsami.0c08133. Epub 2020 Jun 17.

Abstract

Developing novel bifunctional electrocatalysts with advanced oxygen electrocatalytic activity is pivotal for next-generation energy-storage devices. Herein, we present ultrathin oxygen-doped FePSe (FePSe-O) nanosheets by Ar/O plasma treatment, with remarkable surface atom reorganization. Such surface atom reorganization generates multiple crystalline-amorphous interfaces that benefit the kinetics of oxygen evolution reaction, achieving a low overpotential of only 261 mV at 10 mA cm with a small Tafel slope of 41.13 mV dec. Density functional theory calculation indicates that oxygen doping can also modulate the electrical states at the Fermi level with a decreased band gap responsible for the enhanced electrocatalytic performance. Such unique FePSe-O nanosheets can be further fabricated as the air cathode in rechargeable liquid zinc-air batteries (ZABs), which deliver a high open circuit potential of 1.47 V, a small charge-discharge voltage gap of 0.80 V, and good cycling stability for more than 800 circles. As a proof of concept, the flexible solid-state ZABs assembled with FePSe-O nanosheets as cathode also display a favorable charge-discharge performance, durable stability, and good bendability. This work sheds new insights into the rational design of defect-rich ternary thiophosphate nanosheets by plasma treatment toward enhanced oxygen electrocatalysts in metal-air batteries.

摘要

开发具有先进氧电催化活性的新型双功能电催化剂对于下一代储能装置至关重要。在此,我们通过Ar/O等离子体处理制备了具有显著表面原子重排的超薄氧掺杂FePSe(FePSe-O)纳米片。这种表面原子重排产生了多个晶体-非晶界面,有利于析氧反应的动力学,在10 mA cm时实现了仅261 mV的低过电位,塔菲尔斜率为41.13 mV dec。密度泛函理论计算表明,氧掺杂还可以调节费米能级处的电态,降低的带隙有助于提高电催化性能。这种独特的FePSe-O纳米片可以进一步制成可充电液体锌空气电池(ZAB)中的空气阴极,该电池具有1.47 V的高开路电位、0.80 V的小充放电电压间隙以及超过800次循环的良好循环稳定性。作为概念验证,以FePSe-O纳米片为阴极组装的柔性固态ZAB也显示出良好的充放电性能、持久稳定性和良好的可弯曲性。这项工作为通过等离子体处理合理设计富含缺陷的三元硫代磷酸盐纳米片以增强金属空气电池中的氧电催化剂提供了新的见解。

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