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CO2-Induced Phase Engineering: Protocol for Enhanced Photoelectrocatalytic Performance of 2D MoS2 Nanosheets

机译:CO2诱导相工程:增强二维MoS2纳米片的光电催化性能的协议

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摘要

Molybdenum disulfide (MoS2) is a promising non -precious -metal catalyst, but its performance is limited by the density of active sites and poor electrical transport. Its metallic IT phase possesses higher photoelectrocatalytic activity. Thus, how to efficiently increase the concentration of the IT phase in the exfoliated two-dimensiaonal (2D) MoS2 nanosheets is an important premise. In this work, we propose a strategy to prepare a 2D heterostructure of MoS2 nanosheets using supercritical CO2-induced phase engineering to form metallic 1T-MoS2. Theoretical calculations and experimental results demonstrate that the introduced CO2 in the 2H-MoS2 host can prompt the transformation of partial 2H-MoS2 lattices into 1T-MoS2. Moreover, the electrical coupling and synergistic effect between 2H and IT phases can greatly facilitate the efficient electron transfer from the active sites of MoS2, which significantly improves the photocatalytic performance.
机译:二硫化钼(MoS2)是一种有前途的非贵金属催化剂,但其性能受到活性位点密度和不良电传输的限制。它的金属IT相具有较高的光电催化活性。因此,如何有效地提高剥离的二维(2D)MoS2纳米片中IT相的浓度是重要的前提。在这项工作中,我们提出了使用超临界CO2诱导相工程形成金属1T-MoS2来制备MoS2纳米片二维异质结构的策略。理论计算和实验结果表明,在2H-MoS2主体中引入的CO2可以促使部分2H-MoS2晶格转变为1T-MoS2。此外,2H和IT相之间的电耦合和协同效应可以大大促进MoS2活性位点的有效电子转移,从而显着提高光催化性能。

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