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通过丁基锂处理控制氧空位和结构无序来提高镍铁层状双氢氧化物的析氧性能

Boosting Oxygen Evolution Performance of Nickel-Iron Layered Double Hydroxides by Controlling Oxygen Vacancies and Structural Disorder via -Butyllithium Treatment.

作者信息

Chen Xifan, Zhang Yameng, Yang Jia, Xiao Juan-Ding, Yang Zhengkun, Wang Junzhong

机构信息

Institutes of Physical Science and Information Technology, Anhui Graphene Materials Research Center, Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education, Anhui University, Hefei 230601, China.

出版信息

Inorg Chem. 2023 Dec 4;62(48):19795-19803. doi: 10.1021/acs.inorgchem.3c03457. Epub 2023 Nov 21.

Abstract

Nickel-iron-based layered double hydroxides (NiFe-LDHs) are promising catalysts for the oxygen evolution reaction (OER) because of their high activity, availability, and low cost. Defect engineering, particularly the formation of oxygen vacancies, can improve the catalytic activity of NiFe-LDHs. However, the controllable introduction of uniform oxygen vacancies remains challenging. Herein, an -butyllithium treatment method is developed to tune oxygen vacancy defects and change the degree of amorphization in NiFe-LDHs via deep reduction, followed by partial oxidization at low temperatures. Interestingly, the Ni in the NiFe-LDHs is selectively reduced to the alloy state by -butyllithium, whereas Fe is not. The different structural transformations of Ni and Fe during the treatment successfully produce an oxygen-defect-rich amorphous/crystalline electrocatalyst. Under optimal conditions, the treated NiFe-LDHs exhibit high OER activity with an overpotential of 223 mV at 10 mA cm (68 mV lower than that of a commercial IrO electrocatalyst) and long-term stability. Notably, the -butyllithium treatment can be applied to other electrocatalysts, such as CoFe-LDHs and IrO (treated IrO with an overpotential of 197 mV at 10 mA cm). This -butyllithium reduction/partial oxidization treatment constitutes a novel top-down strategy for the controllable modification of metal oxide structures, with various energy-related applications.

摘要

镍铁基层状双氢氧化物(NiFe-LDHs)因其高活性、易获得性和低成本,是析氧反应(OER)中很有前景的催化剂。缺陷工程,特别是氧空位的形成,可以提高NiFe-LDHs的催化活性。然而,可控地引入均匀的氧空位仍然具有挑战性。在此,开发了一种丁基锂处理方法,通过深度还原调节NiFe-LDHs中的氧空位缺陷并改变其非晶化程度,随后在低温下进行部分氧化。有趣的是,NiFe-LDHs中的Ni被丁基锂选择性地还原为合金态,而Fe则没有。处理过程中Ni和Fe的不同结构转变成功地制备出了一种富含氧缺陷的非晶/晶体电催化剂。在最佳条件下,处理后的NiFe-LDHs表现出高OER活性,在10 mA cm时过电位为223 mV(比商业IrO₂电催化剂低68 mV),并且具有长期稳定性。值得注意的是,丁基锂处理可应用于其他电催化剂,如CoFe-LDHs和IrO₂(处理后的IrO₂在10 mA cm时过电位为197 mV)。这种丁基锂还原/部分氧化处理构成了一种用于金属氧化物结构可控修饰的新型自上而下策略,具有各种与能源相关的应用。

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