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A Clean and Facile Synthesis Strategy of MoS2 Nanosheets Grown on Multi-Wall CNTs for Enhanced Hydrogen Evolution Reaction Performance

机译:在多壁碳纳米管上生长的MoS2纳米片的清洁简便合成策略可增强氢释放反应性能

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摘要

Unique hybrid nanostructure, which consists of multi-wall carbon nanotube (MWCNT) stems and MoS2 nanosheet (NS) leaves, are prepared by a hydrothermal method. The fabricated material can be potentially used as an electrocatalyst for the hydrogen evolution reaction (HER). To our knowledge, as the reaction medium, water is firstly utilized to the synthesis of the 1T phase MoS2 NSs which uniformly grow on the carbon-based materials. As a result, a nanohybrid catalyst with excellent HER electrocatalytic properties, which included an onset potential of as low as 50 mV, a Tafel slope of 43 mV dec−1, and remarkable cycling stability, is produced. The observed outstanding catalytic performance can be attributed to the uniform distribution of the metallic 1T phase of the MoS2 NSs, which are characterized by the presence of multiple active edges as well as the effective electron transport route provided by the conductive MWCNT substrate. This work demonstrates the high potential of the synthesized HER catalyst and proposes a novel, efficient, environmentally friendly, and inexpensive method for its fabrication.
机译:通过水热法制备了独特的混合纳米结构,该结构由多壁碳纳米管(MWCNT)茎和MoS2纳米片(NS)叶片组成。所制造的材料可以潜在地用作氢释放反应(HER)的电催化剂。据我们所知,首先将水作为反应介质用于合成在碳基材料上均匀生长的1T相MoS2 NSs。结果,制备了具有优异的HER电催化性能的纳米杂化催化剂,其具有低至50 mV的起始电势,43 mV dec -1 的Tafel斜率和显着的循环稳定性。观察到的出色的催化性能可以归因于MoS2 NSs的金属1T相的均匀分布,其特征是存在多个活性边缘以及导电MWCNT衬底提供的有效电子传输路径。这项工作证明了合成的HER催化剂的高潜力,并提出了一种新颖,高效,环保和廉价的制备方法。

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