Authors
Abhishek Parija, Yun-Hyuk Choi, Zhuotong Liu, Justin L Andrews, Luis R De Jesus, Sirine C Fakra, Mohammed Al-Hashimi, James D Batteas, David Prendergast, Sarbajit Banerjee
Publication date
2018/4/3
Journal
ACS central science
Volume
4
Issue
4
Pages
493-503
Publisher
American Chemical Society
Description
Molybdenum disulfide (MoS2) is a semiconducting transition metal dichalcogenide that is known to be a catalyst for both the hydrogen evolution reaction (HER) as well as for hydro-desulfurization (HDS) of sulfur-rich hydrocarbon fuels. Specifically, the edges of MoS2 nanostructures are known to be far more catalytically active as compared to unmodified basal planes. However, in the absence of the precise details of the geometric and electronic structure of the active catalytic sites, a rational means of modulating edge reactivity remain to be developed. Here we demonstrate using first-principles calculations, X-ray absorption spectroscopy, as well as scanning transmission X-ray microscopy (STXM) imaging that edge corrugations yield distinctive spectroscopic signatures corresponding to increased localization of hybrid Mo 4d states. Independent spectroscopic signatures of such edge states are identified at both the …
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Scholar articles
A Parija, YH Choi, Z Liu, JL Andrews, LR De Jesus… - ACS central science, 2018