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等离子体诱导剥离法制备的MoS纳米片被洋葱状石墨烯包覆,用于高效析氢反应

Plasma-Induced Exfoliation Provides Onion-Like Graphene-Surrounded MoS Nanosheets for a Highly Efficient Hydrogen Evolution Reaction.

作者信息

Nguyen Van-Truong, Le Phuoc Anh, Hsu Yung-Chi, Wei Kung-Hwa

机构信息

Department of Material Science and Engineering, National Chiao Tung University, Hsinchu 30010, Taiwan, Republic of China.

Center for Emergent Functional Matter Science, National Chiao Tung University, Hsinchu 30010, Taiwan, Republic of China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 11;12(10):11533-11542. doi: 10.1021/acsami.9b20902. Epub 2020 Feb 28.

Abstract

With the goal of obtaining sustainable earth-abundant electrocatalyst materials displaying high performance in the hydrogen evolution reaction (HER), here we propose a facile one-pot plasma-induced electrochemical process for the fabrication of new core-shell structures of ultrathin MoS nanosheets engulfed within onion-like graphene nanosheets (OGNs@MoS). The resultant OGNs@MoS structures not only increased the number of active sites of the semiconducting MoS nanosheets but also enhanced their conductivity. Our OGNs@MoS composites exhibited high HER performance, characterized by a low overpotential of 118 mV at a current density of 10 mA cm, a Tafel slope of 73 mV dec, and long-time stability of 10 s without degradation; this performance is much better than that of the sheet-like graphene-wrapped MoS composite GNs@MoS (182 mV, 82 mV dec) and is among the best ever reported for composites involving MoS and graphene nanosheets prepared through a simple one-batch process and using a low temperature and a short time for the HER. This approach appears to be an effective and simple strategy for tuning the morphologies of composites of graphene and transition metal dichalcogenide materials for a broad range of energy applications.

摘要

为了获得在析氢反应(HER)中表现出高性能的可持续的、地球上储量丰富的电催化剂材料,我们在此提出一种简便的一锅法等离子体诱导电化学工艺,用于制备包裹在洋葱状石墨烯纳米片(OGNs@MoS)中的新型超薄MoS纳米片核壳结构。所得的OGNs@MoS结构不仅增加了半导体MoS纳米片的活性位点数量,还提高了其导电性。我们的OGNs@MoS复合材料表现出高HER性能,其特征在于在电流密度为10 mA cm时过电位低至118 mV,塔菲尔斜率为73 mV dec,并且具有10 s的长期稳定性而不降解;该性能远优于片状石墨烯包裹的MoS复合材料GNs@MoS(182 mV,82 mV dec),并且是通过简单的一批法制备且使用低温和短时间用于HER的涉及MoS和石墨烯纳米片的复合材料中报道的最佳性能之一。这种方法似乎是一种有效且简单的策略,可用于调整石墨烯与过渡金属二硫属化物材料的复合材料的形态,以用于广泛的能源应用。

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