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将废弃的LiNiₓMn₁₋ₓCo₀ₓO₂ 阴极回收用于高性能电催化剂,用于氧催化和甲醇氧化反应。

Recycling the Spent LiNi MnCoO Cathodes for High-Performance Electrocatalysts toward Both the Oxygen Catalytic and Methanol Oxidation Reactions.

作者信息

Chen Genman, Yuan Bingen, Dang Jiaxin, Xia Lan, Zhang Chunfei, Wang Qin, Miao He, Yuan Jinliang

机构信息

Faculty of Maritime and Transportation, Ningbo University, Ningbo, 315211, P. R. China.

Department of Microelectronic Science and Engineering, Faculty of Science, Ningbo University, Ningbo, 315211, P. R. China.

出版信息

Small. 2024 Apr;20(15):e2306967. doi: 10.1002/smll.202306967. Epub 2023 Nov 22.

Abstract

The traditional recycling methods of the spent lithium ion batteries (LIBs) involve the intricate and cumbersome steps. This work proposes a facile method of acid leaching followed by the sulfurization treatment to achieve the high Li leaching efficiency, and obtain high-performance multi-function electrocatalysts for oxygen reduction (ORR), oxygen evolution (OER), and methanol oxidation reactions (MOR) from the spent LIB ternary cathodes. By this method, the Li leaching efficiency from the spent LIB ternary cathode can reach 98.3%, and the transition metal sulfide heterostructures (LNMCO-H-450S) consisting MnS, NiS, and NiCoS phases can be obtained. LNMCO-H-450S shows the superior bifunctional oxygen catalytic activities with ORR half-wave potential of 0.763 V and OER potential at 10 mA cm of 1.561 V, surpassing most of the state-of-the-art electrocatalysts. LNMCO-H-450S also demonstrates the superior MOR catalytic activity with the potential at 100 mA cm being 1.37 V. Using LNMCO-H-450S as the oxygen catalyst, this work can construct the aqueous and solid-state zinc-air batteries with high power density of 309 and 257 mW cm, respectively. This work provides a promising strategy for the efficient recovery of Li, and reutilization of Ni, Co, and Mn from the spent LIB ternary cathodes.

摘要

废旧锂离子电池(LIBs)的传统回收方法涉及复杂且繁琐的步骤。本工作提出了一种简便的方法,即先进行酸浸,然后进行硫化处理,以实现高锂浸出效率,并从废旧LIB三元阴极中获得用于氧还原(ORR)、析氧(OER)和甲醇氧化反应(MOR)的高性能多功能电催化剂。通过这种方法,废旧LIB三元阴极的锂浸出效率可达98.3%,并可获得由MnS、NiS和NiCoS相组成的过渡金属硫化物异质结构(LNMCO-H-450S)。LNMCO-H-450S表现出优异的双功能氧催化活性,ORR半波电位为0.763 V,在10 mA cm下的OER电位为1.561 V,超过了大多数现有先进电催化剂。LNMCO-H-450S在100 mA cm下的电位为1.37 V时也表现出优异的MOR催化活性。以LNMCO-H-450S作为氧催化剂,本工作分别构建了功率密度高达309和257 mW cm的水系和固态锌空气电池。本工作为从废旧LIB三元阴极中高效回收锂以及再利用镍、钴和锰提供了一种有前景的策略。

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