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One-Dimensional Crystallographic Etching of Few-Layer WS$_2$

Applied Physics 2024-08-16 v1 Materials Science

Abstract

Layer number-dependent band structures and symmetry are vital for the electrical and optical characteristics of two-dimensional (2D) transition metal dichalcogenides (TMDCs). Harvesting 2D TMDCs with tunable thickness and properties can be achieved through top-down etching and bottom-up growth strategies. In this study, we report a pioneering technique that utilizes the migration of in-situ generated Na-W-S-O droplets to etch out one-dimensional (1D) nanotrenches in few-layer WS2_2. 1D WS2_2 nanotrenches were successfully fabricated on the optically inert bilayer WS2_2, showing pronounced photoluminescence and second harmonic generation signals. Additionally, we demonstrate the modulation of inkjet-printed Na2_2WO4_4-Na2_2SO4_4 particles to switch between the etching and growth modes by manipulating the sulfur supply. This versatile approach enables the creation of 1D nanochannels on 2D TMDCs. Our research presents exciting prospects for the top-down and bottom-up fabrication of 1D-2D mixed-dimensional TMDC nanostructures, expanding their use for photonic and optoelectronic applications.

Keywords

Cite

@article{arxiv.2310.03143,
  title  = {One-Dimensional Crystallographic Etching of Few-Layer WS$_2$},
  author = {Shisheng Li and Yung-Chang Lin and Yiling Chiew and Yunyun Dai and Zixuan Ning and Hideaki Nakajima and Hong En Lim and Jing Wu and Yasuhisa Naito and Toshiya Okazaki and Zhipei Sun and Kazu Suenaga and Yoshiki Sakuma and Kazuhito Tsukagoshi and Takaaki Taniguchi},
  journal= {arXiv preprint arXiv:2310.03143},
  year   = {2024}
}

Comments

37 pages, 16 figures

R2 v1 2026-06-28T12:40:53.050Z