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用于高效析氧反应的碳纳米管互连的镍钴层状双氢氧化物菱形十二面体纳米笼

Carbon Nanotubes Interconnected NiCo Layered Double Hydroxide Rhombic Dodecahedral Nanocages for Efficient Oxygen Evolution Reaction.

作者信息

Li Meng, Huang Yujie, Lin Jiaqi, Li Meize, Jiang Mengqi, Ding Linfei, Sun Dongmei, Huang Kai, Tang Yawen

机构信息

School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.

Jiangsu Key Laboratory of New Power Batteries, Jiangsu Collaborative Innovation Centre of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing 210023, China.

出版信息

Nanomaterials (Basel). 2022 Mar 20;12(6):1015. doi: 10.3390/nano12061015.

Abstract

Proper control of a 3 transition metal-based catalyst with advanced structures toward oxygen evolution reaction (OER) with a more feasible synthesis strategy is of great significance for sustainable energy-related devices. Herein, carbon nanotube interconnected NiCo layered double hydroxide rhombic dodecahedral nanocages (NiCo-LDH RDC@CNTs) were developed here with the assistance of a feasible zeolitic imidazolate framework (ZIF) self-sacrificing template strategy as a highly efficient OER electrocatalyst. Profited by the well-fined rhombic dodecahedral nanocage architecture, CNTs' interconnected characteristic and structural feature of the vertically aligned nanosheets, the as-synthesized NiCo-LDH RDC@CNTs integrated large exposed active surface areas, enhanced electron transfer capacity and multidimensional mass diffusion channels, and thereby collaboratively afforded the remarkable electrocatalytic performance of the OER. Specifically, the designed NiCo-LDH RDC@CNTs exhibited a distinguished OER activity, which only required a low overpotential of 255 mV to reach a current density of 10 mA cm for the OER. For the stability, no obvious current attenuation was detected, even after continuous operation for more than 27 h. We certainly believe that the current extraordinary OER activity combined with the robust stability of NiCo-LDH RDC@CNTs enables it to be a great candidate electrocatalyst for economical and sustainable energy-related devices.

摘要

采用更可行的合成策略,对具有先进结构的三过渡金属基催化剂进行适当控制以实现析氧反应(OER),对于可持续能源相关装置具有重要意义。在此,借助可行的沸石咪唑酯骨架(ZIF)自牺牲模板策略,开发了碳纳米管互连的NiCo层状双氢氧化物菱形十二面体纳米笼(NiCo-LDH RDC@CNTs)作为高效的OER电催化剂。得益于精细的菱形十二面体纳米笼结构以及碳纳米管的互连特性和垂直排列纳米片的结构特征,合成的NiCo-LDH RDC@CNTs具有大的暴露活性表面积、增强的电子转移能力和多维质量扩散通道,从而协同提供了卓越的OER电催化性能。具体而言,所设计的NiCo-LDH RDC@CNTs表现出优异的OER活性,在OER中仅需255 mV的低过电位即可达到10 mA cm的电流密度。关于稳定性,即使连续运行超过27小时后,也未检测到明显的电流衰减。我们坚信,NiCo-LDH RDC@CNTs当前非凡的OER活性与强大的稳定性使其成为经济和可持续能源相关装置的优秀候选电催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a03c/8951491/c78907e42b27/nanomaterials-12-01015-g001.jpg

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