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Understanding catalysis in a multiphasic two-dimensional transition metal dichalcogenide

机译:了解多相二维过渡金属二硫化二氢中的催化作用

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Establishing processing-structure-property relationships for monolayer materials is crucial for a range of applications spanning optics, catalysis, electronics and energy. Presently, for molybdenum disulfide, a promising catalyst for artificial photosynthesis, considerable debate surrounds the structure/property relationships of its various allotropes. Here we unambiguously solve the structure of molybdenum disulfide monolayers using high-resolution transmission electron microscopy supported by density functional theory and show lithium intercalation to direct a preferential transformation of the basal plane from 2H (trigonal prismatic) to 1T' (clustered Mo). These changes alter the energetics of molybdenum disulfide interactions with hydrogen (Delta G(H)), and, with respect to catalysis, the 1T' transformation renders the normally inert basal plane amenable towards hydrogen adsorption and hydrogen evolution. Indeed, we show basal plane activation of 1T' molybdenum disulfide and a lowering of Delta G(H) from +1.6 eV for 2H to +0.18 eV for 1T', comparable to 2H molybdenum disulfide edges on Au(111), one of the most active hydrogen evolution catalysts known.
机译:建立单层材料的加工-结构-性能关系对于光学,催化,电子和能源等一系列应用至关重要。目前,对于二硫化钼(一种有望用于人造光合作用的催化剂),围绕其各种同素异形体的结构/性质关系进行了大量争论。在这里,我们使用由密度泛函理论支持的高分辨率透射电子显微镜明确地解决了二硫化钼单层的结构,并显示了锂嵌入作用,指导基面从2H(三角形棱柱)优先转变为1T'(簇状Mo)。这些变化改变了二硫化钼与氢相互作用的能量(δG(H)),并且在催化方面,1T'转化使通常呈惰性的基面易于吸收氢和析氢。实际上,我们显示了1T'二硫化钼的基面活化和Delta G(H)从2H的+1.6 eV降低到1T'的+0.18 eV,与Au(111)上的2H钼二硫化物边缘相当。最有名的活性氢析出催化剂。

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