Linh Tran P T, Hieu Nguyen N, Phuc Huynh V, Nguyen Cuong Q, Vinh Pham T, Thai Nguyen Q, Hieu Nguyen V
Faculty of Physics, Hanoi National University of Education Ha Noi 100000 Viet Nam.
Institute of Research and Development, Duy Tan University Da Nang 550000 Viet Nam
RSC Adv. 2021 Dec 13;11(63):39672-39679. doi: 10.1039/d1ra07876c.
The lacking of the vertical mirror symmetry in Janus structures compared to their conventional metal monochalcogenides/dichalcogenides leads to their characteristic properties, which are predicted to play significant roles for various promising applications. In this framework, we systematically examine the structural, mechanical, electronic, and optical properties of the two-dimensional 2H Janus CrXO (X = S, Se, Te) monolayers by using first-principles calculation method based on density functional theory. The obtained results from optimization, phonon spectra, and elastic constants demonstrate that all three Janus monolayers present good structural and mechanical stabilities. The calculated elastic constants also indicate that the Janus CrTeO monolayer is much mechanically flexible than the other two monolayers due to its low Young's modulus value. The metallic behavior is observed at the ground state for the Janus CrSeO and CrTeO monolayers in both PBE and HSE06 levels. Meanwhile, the Janus CrSO monolayer exhibits a low indirect semiconducting characteristic. The bandgap of CrSO after the correction of HSE06 hybrid functional is the average value of its binary transition metal dichalcogenides. The broad absorption spectrum of CrSO reveals the wide activated range from the visible to near-ultraviolet region. Our findings not only present insight into the brand-new Janus CrXO monolayers but can also motivate experimental research for several applications in optoelectric and nanoelectromechanical devices.
与传统的金属单硫属化物/二硫属化物相比,Janus结构缺乏垂直镜像对称性,这导致了它们的特性,预计这些特性在各种有前景的应用中发挥重要作用。在此框架下,我们基于密度泛函理论,采用第一性原理计算方法,系统地研究了二维2H Janus CrXO(X = S、Se、Te)单层的结构、力学、电子和光学性质。优化、声子谱和弹性常数的计算结果表明,所有三种Janus单层都具有良好的结构和力学稳定性。计算得到的弹性常数还表明,Janus CrTeO单层由于其低杨氏模量值,比其他两种单层在力学上更具柔韧性。在PBE和HSE06水平下,Janus CrSeO和CrTeO单层在基态表现出金属行为。同时,Janus CrSO单层表现出低间接半导体特性。经过HSE06杂化泛函修正后,CrSO的带隙是其二元过渡金属二硫属化物的平均值。CrSO的宽吸收光谱揭示了从可见光到近紫外区域的宽激活范围。我们的研究结果不仅深入了解了全新的Janus CrXO单层,还能推动光电和纳米机电设备中多种应用的实验研究。