Plasma‐Driven Selenization for Electrical Property Enhancement in Janus 2D Materials

Author:

He Shih‐Ming1,Zhuang Jia‐Yung2,Chen Ciao‐Fen34,Liao Ren‐Kuei2,Lo Shun‐Tsung4,Lin Yen‐Fu3ORCID,Su Ching‐Yuan125

Affiliation:

1. Optical Sciences Center National Central University Taoyuan 32001 Taiwan

2. Department of Mechanical Engineering National Central University Taoyuan 32001 Taiwan

3. Department of Physics National Chung Hsing University Taichung 40227 Taiwan

4. Department of Electrophysics National Yang Ming Chiao Tung University Hsinchu 30010 Taiwan

5. Graduate Institute of Energy Engineering National Central University Taoyuan 32001 Taiwan

Abstract

AbstractThe recent emergence of Janus 2D materials like SnSSe, derived from SnS2, reveals unique electrical and optical features, such as asymmetrical electronic structure, enhanced carrier mobility, and tunable bandgap. Previous theoretical studies have discuss the electronic properties of Janus SnSSe, but experimental evidence is limited. This study presents a two‐step method for synthesizing Janus SnSSe, involving hydrogen plasma treatment and in situ selenization. Optimized conditions (38 W, 1.5 min, 250 °C) are determined using Raman spectroscopy and AFM analysis. XPS confirmed SnSSe's elemental composition, while KPFM reveals a significant reduction in the work function (from 5.26 down to 5.14 eV) for the first time, indicating asymmetrically induced n‐type doping. Finally, field‐effect transistors (FETs) derived from SnSSe exhibited significantly enhanced mobility and on‐current, as well as n‐type doping, compared to SnS2‐based FETs. These findings lay a crucial foundation for developing high‐performance 2D electronic and optoelectronic devices.

Funder

National Science and Technology Council

Publisher

Wiley

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