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用于水的电化学氧化的氮、硫共掺杂还原氧化石墨烯包裹的镍/硫化镍纳米颗粒的逐层 motif 异质结构构建

Layer-by-Layer Motif Heteroarchitecturing of N,S-Codoped Reduced Graphene Oxide-Wrapped Ni/NiS Nanoparticles for the Electrochemical Oxidation of Water.

作者信息

Zakaria Mohamed Barakat, Guo Yanna, Na Jongbeom, Tahawy Rafat, Chikyow Toyohiro, El-Said Waleed A, El-Hady Deia A, Alshitari Wael, Yamauchi Yusuke, Lin Jianjian

机构信息

Key Laboratory of Eco-chemical Engineering, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology (QUST), Qingdao, 266042, China.

Department of Chemistry, Faculty of Science, Tanta University, Tanta, Gharbeya, 31527, Egypt.

出版信息

ChemSusChem. 2020 Jun 19;13(12):3269-3276. doi: 10.1002/cssc.202000159. Epub 2020 May 12.

Abstract

A new heterostructured material is synthesized with lamellar arrangements in nanoscale precision through an innovative synthetic approach. The self-assembled Ni-based cyano-bridged coordination polymer flakes (Ni-CP) and graphene oxide (GO) nanosheets with a layered morphology (Ni-CP/GO) are used as precursors for the synthesis of multicomponent hybrid materials. Annealing of Ni-CP/GO in nitrogen at 450 °C allows the formation of Ni C/rGO nanocomposites. Grinding Ni-CP/GO and thiourea and annealing under the same conditions produces N,S-codoped reduced GO-wrapped NiS flakes (NiS /NS-rGO). Interestingly, further heating up to 550 °C allows the phase transformation of NiS into NiS accompanied by the formation of a face-centered cubic (FCC-Ni) metal phase between NS-rGO layers (FCC-Ni-NiS/NS-rGO). Among all the materials, the resulting FCC-Ni-NiS/NS-rGO exhibits good electrocatalytic activity and stability toward the oxygen evolution reaction (OER) owing to the synergistic effect of multiphases, the well-designed alternating layered structures on the nanoscale with abundant active sites.

摘要

通过一种创新的合成方法,合成了一种具有纳米级精度层状排列的新型异质结构材料。具有层状形态的自组装镍基氰基桥联配位聚合物薄片(Ni-CP)和氧化石墨烯(GO)纳米片(Ni-CP/GO)被用作合成多组分杂化材料的前驱体。在450°C的氮气中对Ni-CP/GO进行退火处理,可形成Ni C/rGO纳米复合材料。将Ni-CP/GO与硫脲研磨并在相同条件下退火,可得到氮、硫共掺杂的还原氧化石墨烯包裹的硫化镍薄片(NiS /NS-rGO)。有趣的是,进一步加热至550°C会使NiS发生相转变为NiS,并在NS-rGO层之间形成面心立方(FCC-Ni)金属相(FCC-Ni-NiS/NS-rGO)。在所有材料中,所得的FCC-Ni-NiS/NS-rGO由于多相的协同效应、纳米级精心设计的交替层状结构以及丰富的活性位点,对析氧反应(OER)表现出良好的电催化活性和稳定性。

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