Se-mediated dry transfer of wafer-scale 2D semiconductors for advanced electronics.

Zhang, Xingchao; Zhou, Lanying; Wang, Shuopei; Li, Tong; Du, Hongyue; Zhou, Yuchao; Liu, Jieying; Zhao, Jiaojiao et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Two-dimensional (2D) semiconductors hold a great promise for next-generation electronics. Yet, achieving a clean and intact transfer of 2D films on device-compatible substrates remains a critical challenge. Here, we report an approach that uses selenium (Se) as the intermediate layer to facilitate the transfer of wafer-scale molybdenum disulfide (MoS<sub>2</sub>) monolayers on target substrates with high surface/interface cleanness and structural integrity. Our method enables nearly 100% film intactness of the transferred 2D semiconductors which are free from residues or contaminants. Characterizations reveal that the Se-assisted dry-transfer yields MoS<sub>2</sub> film with superior quality compared to conventional transfer techniques. The fabricated field-effect transistors (FETs) and logic circuits based on these transferred films demonstrate remarkable electrical performance, including on/off current ratios up to 2.7×10<sup>10</sup> and electron mobility of 71.3 cm<sup>2</sup>·V<sup>-1</sup>·s<sup>-1</sup> for individual FETs. Our results underscore the feasibility of this dry-transfer technology for fabricating high-performance 2D electronics that are fully compatible with standard semiconductor processes, paving the way for integrating 2D materials into advanced electronic applications.