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Se-Rich MoSe2 Nanosheets and Their Superior Electrocatalytic Performance for Hydrogen Evolution Reaction

机译:富含SE的MOSE2纳米片及其用于氢气进化反应的优异电催化性能

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Two-dimensional MoSe2 has emerged as a promising electrocatalyst for the hydrogen evolution reaction (HER), although its catalytic activity needs to be further improved. Herein, we report Serich MoSe2 nanosheets synthesized using a hydrothermal reaction, displaying much enhanced HER performance at the Se/Mo ratio of 2.3. The transition from the 2H to the 1T' phase occurred as Se/Mo exceeded 2. Structural analysis revealed the presence of Se adatoms as well as the formation of Se-Se bonding. Based on first-principles calculations, we propose two equally stable Se-rich structures. In the first one, excess Se atoms bridge two MoSe2 layers via the interlayer Se-Se bonds. In the second one, the Se atoms substitute for the Mo atoms, and extra Se atoms are added closest to the Mo-substituted Se. Calculation of Gibbs free energy along the reaction path indicates that the Se adatoms of the second model are the most active sites for HER.
机译:二维MOSE2作为氢进化反应(她)的有希望的电催化剂,尽管需要进一步改善其催化活性。 在此,我们报告使用水热反应合成的血糖MOSE2纳米蛋白酶,在SE / MO比为2.3时显示出大量增强的性能。 从2H到1T'相发生的转变为SE / Mo超过2.结构分析显示出存在Se Adatoms以及Se-Se键合的形成。 基于第一原理计算,我们提出了两个同样稳定的富含SE的结构。 在第一,过量的SE原子通过中间层SE-SE键桥两个MOSE2层。 在第二个中,SE原子替代Mo原子,并且最接近Mo-取代的Se添加额外的SE原子。 沿着反应路径的吉布斯自由能的计算表明第二模型的SE Adatoms是她最活跃的场地。

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