November 2016

Journal

Transition metal substitutional doping in synthetic atomically-thin semiconductors

By:
Liang, Liangbo ; Meunier, V.; Sumpter, Bobby G; Gao, Jian; Kim, Young-Duck; Chow, Phil; Idrobo Tapia, Juan C; Li, Baichang; Tan, Jiawei; LU, T; Hone, James; Koratkar, Nikhil
Journal Name:
Advanced Materials
Page Number:
9735
Volume:
28
Issue Number:
44
Publication Date:
November 30, 2016
View DOI Listing:
https://doi.org/10.1002/adma.201601104

Abstract

Semiconductor impurity doping has enabled an entire generation of technology. The emergence of alternative semiconductor material systems, such as transition metal dichalcogenides (TMDCs), requires the development of scalable doping strategies. We report an unprecedented one-pot synthesis for transition-metal substitution in large-area, synthetic monolayer TMDCs. Electron microscopy, optical and electronic transport characterization and ab initio calculations indicate that our doping strategy preserves the attractive qualities of TMDC monolayers, including semiconducting transport and strong direct-gap luminescence. These results are expected to encourage exploration of transition-metal substitution in two-dimensional systems, potentially enabling next-generation optoelectronic technology in the atomically-thin regime.


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