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High-index faceted CuFeS2 nanosheets with enhanced behavior for boosting hydrogen evolution reaction

机译:高指数面CuFeS2 nanosheets与增强行为促进氢进化的反应

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A rational design of highly active and robust catalysts based on earth-abundant elements for hydrogen evolution reaction (HER) is essential for future renewable energy applications. Herein, we report the synthesis of a new class of ultrathin metallic CuFeS2 nanosheets (NSs) with abundant exposed high-index {0 (2) over bar4} facets. They serve as a robust catalyst for the HER with a lower onset potential of 28.1 mV, an over-potential of only 88.7 mV (at j = 10 mA cm(-2)) and remarkable long-term stability in 0.5 M H2SO4, which make them the best system among all the reported non-noble metal catalysts. The theoretical calculations reveal that the mechanistic origin for such a high HER activity should be attributed to the excess S(2-)active sites on the exposed {0 (2) over bar 4} high-index facets of CuFeS2 NSs, which have a rather favorable Gibbs free energy for atomic hydrogen adsorption. The present work highlights the importance of designing ultrathin metallic chalcopyrite nanosheets with high-index facets in order to increase the number of active sites for boosting the HER performance.
机译:一个理性的设计高活性和鲁棒性基于地球上充足的元素的催化剂析氢反应(她)是至关重要的未来可再生能源的应用。我们报告一个新类的合成超薄金属CuFeS2 nanosheets (NSs)丰富的暴露高指数在bar4} {0 (2)方面。她的爆发潜力较低28.1 mV,潜在的只有88.7 mV马(j = 10厘米(2))和显著的长期稳定在0.5M硫酸,也让他们最好的系统中所有的非贵金属催化剂。理论计算表明,机械的起源如此高的活动应该归功于过剩年代(2 -)活跃网站暴露4}{0(2)在酒吧CuFeS2 NSs高指数方面,有一个而有利的原子的吉布斯自由能氢吸附。超薄金属设计的重要性黄铜矿nanosheets高指数面为了增加活动网站的数量增加了她的表演。

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