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Internal Thermal Stress-Driven Phase Transformation in Van der Waals Layered Materials

Authors
Yun, Seok JoonChoi, Soo HoKim, Ji-WonYoon, DuheeCho, Byeong WookWon, Yo SeobKim, Jae WooLee, JinaKim, Young InKim, Young-MinKirubasankar, BalakrishnanKim, Soo MinKim, Ki KangLee, Young Hee
Issue Date
Oct-2022
Publisher
American Chemical Society
Keywords
electronic phase transformation; internal thermal stress; quantum phase transformation; structural phase transformation; van der Waals layered materials
Citation
ACS Nano, v.16, no.10, pp 17033 - 17040
Pages
8
Journal Title
ACS Nano
Volume
16
Number
10
Start Page
17033
End Page
17040
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/152421
DOI
10.1021/acsnano.2c07150
ISSN
1936-0851
1936-086X
Abstract
High pressure or strain is an effective strategy for generating phase transformations in van der Waals (vdW) layered materials without introducing defects, but this approach remains difficult to perform consistently. We present a scalable and facile method for achieving phase transformation in vdW materials, wherein solid vdW materials are subject to internal thermal stress within a molten metal mantle as it undergoes cooling. This internal thermal stress is principally the product of differential thermal expansion between mantle and core and can be tuned by the mantle material and temperature conditions. We validated this approach by achieving phase transformation of red phosphorus to black phosphorus, and metallic 1T′- to semiconducting 2H-MoTe2 crystals. We further demonstrate quantum electronic phase transformation of suppressed charge density wave in TiSe2 by means of electron-phonon coupling using the same system. © 2022 American Chemical Society.
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