TY - JOUR
T1 - Reversible Semimetal-Semiconductor Transition of Unconventional-Phase WS2 Nanosheets
AU - Zhai, Wei
AU - Qi, Junlei
AU - Xu, Chao
AU - Chen, Bo
AU - Li, Zijian
AU - Wang, Yongji
AU - Zhai, Li
AU - Yao, Yao
AU - Li, Siyuan
AU - Zhang, Qinghua
AU - Ge, Yiyao
AU - Chi, Banlan
AU - Ren, Yi
AU - Huang, Zhiqi
AU - Lai, Zhuangchai
AU - Gu, Lin
AU - Zhu, Ye
AU - He, Qiyuan
AU - Zhang, Hua
N1 - Publisher Copyright:
© 2023 American Chemical Society
PY - 2023/6/21
Y1 - 2023/6/21
N2 - Phase transition with band gap modulation of materials has gained intensive research attention due to its various applications, including memories, neuromorphic computing, and transistors. As a powerful strategy to tune the crystal phase of transition-metal dichalcogenides (TMDs), the phase transition of TMDs provides opportunities to prepare new phases of TMDs for exploring their phase-dependent property, function, and application. However, the previously reported phase transition of TMDs is mainly irreversible. Here, we report a reversible phase transition in the semimetallic 1T′-WS2 driven by proton intercalation and deintercalation, resulting in a newly discovered semiconducting WS2 with a novel unconventional phase, denoted as the 1T′d phase. Impressively, an on/off ratio of >106 has been achieved during the phase transition of WS2 from the semimetallic 1T′ phase to the semiconducting 1T′d phase. Our work not only provides a unique insight into the phase transition of TMDs via proton intercalation but also opens up possibilities to tune their physicochemical properties for various applications.
AB - Phase transition with band gap modulation of materials has gained intensive research attention due to its various applications, including memories, neuromorphic computing, and transistors. As a powerful strategy to tune the crystal phase of transition-metal dichalcogenides (TMDs), the phase transition of TMDs provides opportunities to prepare new phases of TMDs for exploring their phase-dependent property, function, and application. However, the previously reported phase transition of TMDs is mainly irreversible. Here, we report a reversible phase transition in the semimetallic 1T′-WS2 driven by proton intercalation and deintercalation, resulting in a newly discovered semiconducting WS2 with a novel unconventional phase, denoted as the 1T′d phase. Impressively, an on/off ratio of >106 has been achieved during the phase transition of WS2 from the semimetallic 1T′ phase to the semiconducting 1T′d phase. Our work not only provides a unique insight into the phase transition of TMDs via proton intercalation but also opens up possibilities to tune their physicochemical properties for various applications.
UR - http://www.scopus.com/inward/record.url?scp=85163841466&partnerID=8YFLogxK
U2 - 10.1021/jacs.3c03776
DO - 10.1021/jacs.3c03776
M3 - Article
C2 - 37279025
AN - SCOPUS:85163841466
SN - 0002-7863
VL - 145
SP - 13444
EP - 13451
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 24
ER -