Hydrothermal synthesis and controlled growth of group-VIB W metal compound nanostructures from tungsten oxide to tungsten disulphide

纳米结构 光电流 材料科学 带隙 氧化物 密度泛函理论 钨化合物 过渡金属 纳米技术 化学工程 冶金 化学 计算化学 催化作用 有机化学 光电子学 工程类
作者
Xue Wang,Cheng‐Bao Yao,Li-Yuan Wang,Ze-Miao Wang,Cai-Hong Jiang,Xiaojie Liu
出处
期刊:Nanoscale [The Royal Society of Chemistry]
卷期号:14 (39): 14670-14682 被引量:2
标识
DOI:10.1039/d2nr03786f
摘要

Two-dimensional lateral group-VIB transition metal dichalcogenides (TMDs) have attracted much attention in the fast evolving field of advanced photoelectric functional materials, but their controllable fabrication is challenging. Herein, an emerging synthetic route for sulfurization of tungsten oxide was developed. During the hydrothermal reaction, the optimization of the precursor selection and synthesis parameters led to the tunable properties of WO3-WSxOy-WS2 nanostructures. The vulcanization was thermodynamically favorably at low temperatures and in an environment with a sufficient S source, wherein WO3 was reduced by H atoms to WO3-x, and S atoms were preferentially adsorbed on O vacancies. The WSxOy nanostructures have a narrow band-gap attributed to the effect of S on the valence band top and electronic density of states by density functional theory. The photocurrent response and charge transfer properties of WSxOy were improved due to the charge transport between WS2 and WO3. Understanding the formation and transformation of WS2 nanostructures in solution contributes to the discovery of the important structure-efficiency relationship, which may be extended to other TMDs systems. Hence, extensive research efforts are still needed to develop safer and more efficient synthesis and modification methods to fully utilize the distinctive advantageous properties of TMDs in the photoelectric field.
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