Tunable Indirect to Direct Band Gap Transition of Monolayer Sc2CO2 by the Strain Effect

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초록

MXene has not yet been investigated in optical applications because it is a newly suggested two-dimensional material. In the present work, the first investigation of the prospects of MiXene as a novel optical nanodevice was done by applying strain to monolayer Sc2CO2 using first-principles density-functional theory. This singlelayer material experiences an indirect to direct band gap transition with variation of the band gap size at a relatively small critical strain of about 2%. The present work emphasizes that monolayer MXene can become a promising material for an optical nanodevice by modulating the band gap properties using strain engineering.

키워드

MXeneSc2CO2indirect to direct band gap transitionstrainoptical nanodeviceDFT2-DIMENSIONAL TITANIUM CARBIDETOTAL-ENERGY CALCULATIONSWAVE BASIS-SETMETAL CARBIDESELECTRONIC-PROPERTIESMAGNETIC-PROPERTIESION BATTERIESGRAPHENEMXENETI3ALC2
제목
Tunable Indirect to Direct Band Gap Transition of Monolayer Sc2CO2 by the Strain Effect
저자
Lee, YoungbinCho, Sung BeomChung, Yong-Chae
DOI
10.1021/am504233d
발행일
2014-08
유형
Article
저널명
ACS Applied Materials and Interfaces
6
16
페이지
14724 ~ 14728