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Increased crystallinity of RuSe2/carbon nanotubes for enhanced electrochemical hydrogen generation performance

机译:结晶度的增加RuSe2 /碳纳米管为增强电化学氢生成性能

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Ru-Based catalysts are significant in the green hydrogen generation via the electrochemical water-splitting reaction. Herein, it is found that the increased crystallinity of cubic RuSe2 nanoparticles anchored over carbon nanotubes (RuSe2/CNTs) could largely increase the hydrogen generation performance both in acidic and alkaline electrolytes. The freshly prepared RuSe2/CNTs with low crystallinity had a very low catalytic performance for the HER, while the catalytic ability could be largely boosted by facile thermal annealing at 650 °C in an N2 atmosphere, resulting from the increased crystallinity and electronic effect. The crystal structure enhancement of the RuSe2 nanoparticles was well supported by the X-ray diffraction technique and the lattice fringes in the high-resolution transmission electron microscopy images. As a result, the catalyst exhibited largely improved catalytic performance compared to the freshly prepared RuSe2/CNTs; specifically, the overpotentials of 48 and 64 mV were required to drive 10 mA cm−2 in alkaline and acidic media when loaded on a glassy carbon electrode, much less than those of 109 and 120 mV for the freshly prepared RuSe2/CNTs; the catalytic performance in the alkaline electrolyte was even close to that of the commercial Pt/C catalyst. Correspondingly, the improved catalytic stability, catalytic kinetics, charge transfer ability and catalytic efficiency of the active sites were also observed. The current work shows an effective approach and important understanding for catalytic performance enhancement via increased crystallinity by facile thermal annealing.
机译:Ru-Based催化剂在绿色非常重要通过电化学氢生成水分解反应。立方RuSe2结晶度的增加纳米粒子固定在碳纳米管(RuSe2 /碳纳米管)可以很大程度上增加了氢气代在酸性和性能碱性电解质。RuSe2 /结晶度较低的碳纳米管有一个非常低催化性能的她,虽然可以很大程度上提高了催化能力温和的热处理在N2 650°C气氛,增加所引起的结晶度和电子效应。RuSe2纳米粒子的结构改进x射线衍射的支持技术和晶格边缘高分辨率透射电子显微镜图像。很大程度上改善催化性能比较刚做好的RuSe2 /碳纳米管;48和64 mV的过电压是必需的马开车10厘米−2在碱性和酸性的媒体当加载在玻璃碳电极,太多少比109年和120年新mV准备RuSe2 /碳纳米管;碱性电解质甚至接近商业Pt / C催化剂。改进催化稳定,催化和催化动力学、电荷转移能力活动网站也效率观察到。方法和重要的理解通过增加催化性能增强结晶度的灵巧的热退火。

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