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Janus(Mo/-MoC)@C异质结构作为酸性和碱性介质中析氢反应的高效电催化剂。

Janus (Mo/-MoC)@C heterostructure as an efficient electrocatalyst for the hydrogen evolution reaction in acidic and alkaline media.

作者信息

Zhu Weiwei, Jiang Zhongya, Peng Xiang, Li Zhaorong, Woldu Abebe Reda, Lu Fushen, Fang Yiwen, Chu Paul K, Hu Liangsheng

机构信息

Department of Mechanical Engineering, Shantou University, Guangdong, 515063, People's Republic of China.

Department of Chemistry and Key Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province, Shantou University, Guangdong, 515063, People's Republic of China.

出版信息

Nanotechnology. 2022 Nov 17;34(5). doi: 10.1088/1361-6528/ac9fdc.

Abstract

To explore low-cost, high-efficiency, and noble-metal-free catalysts for electrocatalytic water splitting in both acidic and alkaline media, the metal-metal carbide Janus hierarchical structure comprising Mo and-MoC embedded on a carbon layer (Mo/-MoC)@C is synthesized by a hydrothermal reaction and subsequent low-temperature magnesium thermic process. Systematic characterization by XRD, XPS, Raman scattering, and SEM/TEM reveals the successful formation of metallic Mo and-MoC nanoparticles. The synthesized (Mo/-MoC)@C has a large specific surface area and boasts highly efficient hydrogen evolution reaction activity including low overpotentials of 152 and 171 mV at a current density of 10 mA cmand small Tafel slopes of 51.7 and 63.5 mV decin acidic and alkaline media, respectively. In addition, the catalyst shows outstanding stability for 48 h in both acidic and alkaline media. The excellent catalytic activity originates from more active sites and greater electron conductivity bestowed by the carbon layer, which also improves the long-term stability in both acidic and alkaline solutions.

摘要

为了探索用于酸性和碱性介质中电催化水分解的低成本、高效率且无贵金属的催化剂,通过水热反应和随后的低温镁热过程合成了包含嵌入碳层的Mo和-MoC的金属-金属碳化物双面分级结构(Mo/-MoC)@C。通过XRD、XPS、拉曼散射和SEM/TEM进行的系统表征揭示了金属Mo和-MoC纳米颗粒的成功形成。合成的(Mo/-MoC)@C具有大的比表面积,并具有高效的析氢反应活性,在酸性和碱性介质中,在电流密度为10 mA cm时的过电位分别低至152和171 mV,塔菲尔斜率分别小至51.7和63.5 mV dec。此外,该催化剂在酸性和碱性介质中均表现出48小时的出色稳定性。优异的催化活性源于碳层赋予的更多活性位点和更高的电子导电性,这也提高了在酸性和碱性溶液中的长期稳定性。

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