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Get Free AccessAtomic-scale defects in two-dimensional transition metal dichalcogenides (TMDs) often dominate their physical and chemical properties. Introducing defects in a controllable manner can tailor properties of TMDs. For example, chalcogen atom defects in TMDs were reported to trigger phase transition, induce ferromagnetism, and drive superconductivity. However, reported strategies to induce chalcogen atom defects including postgrowth annealing, laser irradiation, or plasma usually require high temperature (such as 500 °C) or cause unwanted structural damage. Here, we demonstrate low-temperature (60 °C) partial surface oxidation in 2D PdSe2 with low disorder and good stability. The combination of scanning tunneling microscopy, X-ray photoelectron spectroscopy, and density functional theory calculations provide evidence of atomic-scale partial oxidation with both atomic resolution and chemical sensitivity. We also experimentally demonstrate that this controllable oxygen incorporation effectively tailors the electronic, optoelectronic, and catalytic activity of PdSe2. This work provides a pathway toward fine-tuning the physical and chemical properties of 2D TMDs and their applications in nanoelectronics, optoelectronics, and electrocatalysis.
Qijie Liang, Qian Zhang, Jian Gou, Tingting Song, Arramel Arramel, Hao Chen, Ming Yang, Sharon Xiaodai Lim, Qixing Wang, Rui Zhu, Yakovlev Nikolai, Swee Ching Tan, Wenjing Zhang, Konstantin ‘kostya’ Novoselov, Andrew T. S. Wee (2020). Performance Improvement by Ozone Treatment of 2D PdSe<sub>2</sub>. ACS Nano, 14(5), pp. 5668-5677, DOI: 10.1021/acsnano.0c00180.
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Type
Article
Year
2020
Authors
15
Datasets
0
Total Files
0
Language
English
Journal
ACS Nano
DOI
10.1021/acsnano.0c00180
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