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具有缺陷的钠/铝共掺杂层状阴极作为高性能锂离子电池和析氧反应的双功能电催化剂

Na/Al Codoped Layered Cathode with Defects as Bifunctional Electrocatalyst for High-Performance Li-Ion Battery and Oxygen Evolution Reaction.

作者信息

Singh Aditya Narayan, Kim Min-Ho, Meena Abhishek, Wi Tae-Ung, Lee Hyun-Wook, Kim Kwang S

机构信息

Center for Superfunctional Materials, Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), 50, UNIST-gil, Ulsan, 44919, Republic of Korea.

Department of Energy Engineering, School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, Republic of Korea.

出版信息

Small. 2021 May;17(18):e2005605. doi: 10.1002/smll.202005605. Epub 2021 Mar 30.

Abstract

The rational design of bifunctional electrocatalyst through simple synthesis with high activity remains a challenging task. Herein, Na/Al codoped Li-excess Li-Ru-Ni-O layered electrodes are demonstrated with defects/dislocations as an efficient bifunctional electrocatalyst toward lithium-ion battery (LIB) and oxygen evolution reaction (OER). Toward LIB cathode, specific capacity of 173 mAh g (0.2C-rate), cyclability (>95.0%), high Columbic efficiency (99.2%), and energy efficiency (90.7%) are achieved. The codoped electrocatalyst has exhibited OER activity at a low onset potential (270 mV@10 mA cm ), with a Tafel slope 69.3 mV dec , and long-term stability over 36 h superior to the undoped and many other OER electrocatalysts including the benchmark IrO . The concurrent doping resides in the crystal lattice (where Na shows the pillaring effect to improve facile Li diffusion), Al improves the stabilization of the layered structure, and defective structures provide abundant active sites to accelerate OER reactions.

摘要

通过简单合成来合理设计具有高活性的双功能电催化剂仍然是一项具有挑战性的任务。在此,展示了Na/Al共掺杂的富锂Li-Ru-Ni-O层状电极,其具有缺陷/位错,是一种用于锂离子电池(LIB)和析氧反应(OER)的高效双功能电催化剂。对于LIB正极,实现了173 mAh g的比容量(0.2C倍率)、循环稳定性(>95.0%)、高库仑效率(99.2%)和能量效率(90.7%)。该共掺杂电催化剂在低起始电位(270 mV@10 mA cm )下表现出OER活性,塔菲尔斜率为69.3 mV dec ,并且在36小时以上的长期稳定性优于未掺杂的以及许多其他OER电催化剂,包括基准IrO 。同时掺杂存在于晶格中(其中Na显示出支柱效应以改善Li的扩散便利性),Al改善了层状结构的稳定性,而缺陷结构提供了丰富的活性位点以加速OER反应。

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