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具有主导活性{200}面的亚1.1纳米超薄多孔CoP纳米片:一种用于析氢反应的高质量活性和高效电催化剂。

Sub-1.1 nm ultrathin porous CoP nanosheets with dominant reactive {200} facets: a high mass activity and efficient electrocatalyst for the hydrogen evolution reaction.

作者信息

Zhang Chao, Huang Yi, Yu Yifu, Zhang Jingfang, Zhuo Sifei, Zhang Bin

机构信息

Department of Chemistry , School of Science , Tianjin Key Laboratory of Molecular Optoelectronic Science , Tianjin University and Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) , Tianjin 300072 , China . Email:

出版信息

Chem Sci. 2017 Apr 1;8(4):2769-2775. doi: 10.1039/c6sc05687c. Epub 2017 Jan 25.

Abstract

The exploration of a facile strategy to synthesize porous ultrathin nanosheets of non-layered materials, especially with exposed reactive facets, as highly efficient electrocatalysts for the hydrogen evolution reaction (HER), remains challenging. Herein we demonstrate a chemical transformation strategy to synthesize porous CoP ultrathin nanosheets with sub-1.1 nm thickness and exposed {200} facets phosphidation of CoO precursors. The resultant samples exhibit outstanding electrochemical HER performance: a low overpotential (only 56 and 131 mV are required for current densities of 10 and 100 mA cm, respectively), a small Tafel slope of 44 mV per decade, a good stability of over 20 h, and a high mass activity of 151 A g at an overpotential of 100 mV. The latter is about 80 times higher than that of CoP nanoparticles. Experimental data and density functional theory calculations reveal that a high proportion of reactive {200} facets, high utilization efficiency of active sites, metallic nature, appropriate structural disorder, facile electron/mass transfer and rich active sites benefiting from the unique ultrathin and porous structure are the key factors for the greatly improved activity. Additionally, this facile chemical conversion strategy can be developed to a generalized method for preparing porous ultrathin nanosheets of CoSe and CoS that cannot be obtained using other methods.

摘要

探索一种简便的策略来合成非层状材料的多孔超薄纳米片,尤其是具有暴露的反应性晶面的纳米片,作为析氢反应(HER)的高效电催化剂,仍然具有挑战性。在此,我们展示了一种化学转化策略,通过对CoO前驱体进行磷化来合成厚度小于1.1 nm且具有暴露{200}晶面的多孔CoP超薄纳米片。所得样品表现出出色的电化学HER性能:低过电位(电流密度分别为10和100 mA cm时,仅需56和131 mV),每十倍电流密度下44 mV的小塔菲尔斜率,超过20小时的良好稳定性,以及在100 mV过电位下151 A g的高质量活性。后者比CoP纳米颗粒高约80倍。实验数据和密度泛函理论计算表明,高比例的反应性{200}晶面、活性位点的高利用效率、金属性质、适当的结构无序、便捷的电子/质量转移以及受益于独特超薄和多孔结构的丰富活性位点是活性大幅提高的关键因素。此外,这种简便的化学转化策略可以发展成为一种通用方法,用于制备用其他方法无法获得的CoSe和CoS多孔超薄纳米片。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea5/5426437/bdc0d9cb43c2/c6sc05687c-f1.jpg

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