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Charge mediated semiconducting-to-metallic phase transition in molybdenum disulphide monolayer and hydrogen evolution reaction in New 1T’ phase

机译:二硫化钼单层中电荷介导的半导体到金属的相变和New 1T′相中的氢析出反应

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摘要

The phase transition of single layer molybdenum disulphide (MoS2) from semi-conducting 2H to metallic 1T and then to 1T' phases, and the effect of the phase transition on hydrogen evolution reaction (HER) are investigated within this work by density functional theory. Experimentally, 2H-MoS2 has been widely used as an excellent electrode for HER and can get charged easily. Here we find that the negative charge has a significant impact on the structural phase transition in a MoS2 monolayer. The thermodynamic stability of 1T-MoS2 increases with the negative charge state, comparing with the 2H-MoS2 structure before phase transition and the kinetic energy barrier for a phase transition from 2H to 1T decreases from 1.59 eV to 0.27 eV when 4 e- are injected per MoS2 unit. Additionally, 1T phase is found to transform into the distorted structure (1T' phase) spontaneously. On their activity toward hydrogen evolution reaction, 1T'-MoS2 structure hydrogen coverage shows comparable hydrogen evolution reaction activity to the 2H-MoS2 structure. If the charge transfer kinetics is taken into account, the catalytic activity of 1T'-MoS2 is superior to that of 2H-MoS2. Our finding provides a possible novel method for phase transition of MoS2, and enriches understanding of the catalytic properties of MoS2 for HER.
机译:在此工作中,通过密度泛函理论研究了单层二硫化钼(MoS2)从半导体2H到金属1T然后到1T'相的相变,以及相变对氢析出反应(HER)的影响。实验上,2H-MoS2已被广泛用作HER的优良电极,并且容易充电。在这里,我们发现负电荷对MoS2单层的结构相变具有重大影响。与相变之前的2H-MoS2结构相比,1T-MoS2的热力学稳定性随着负电荷状态的增加而增加,当注入4 e-时,从2H到1T的相变的动能垒从1.59 eV降低到0.27 eV每个MoS2单位。此外,发现1T相会自发转变为扭曲的结构(1T'相)。关于它们对氢释放反应的活性,1T'-MoS2结构的氢覆盖率显示出与2H-MoS2结构相当的氢释放反应活性。如果考虑电荷转移动力学,则1T'-MoS2的催化活性优于2H-MoS2。我们的发现为MoS2的相变提供了一种可能的新方法,并丰富了MoS2对HER的催化性能的理解。

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