| Literature DB >> 33975284 |
Jinming Zhang1, Yezheng Qian1, Haiyan Nan1, Xiaofeng Gu1, Shaoqing Xiao1.
Abstract
Alloy engineering is efficient in modulating the electronic structure and physical and chemical properties of Transition metal dichalcogenides (TMDs). Here, we develop an efficient and simple confined-space CVD strategy by using a smaller quartz boat nested in a larger quartz boat for the preparation of ternary alloy MoS2(1-x)Se2xmonolayers on SiO2/Si substrates with controllable composition. The effect of hydrogen ratio of the mixed carrier gas (Ar/H2) on the resultant flakes are systematically investigated. A hydrogon ratio of 15% is demonstrated to be the most appropriate to synthesize large size (more than 400μm) single crystalline MoS2(1-x)Se2xalloy monolayers. The composition of the alloy can also be changed in a full range (2x= 0-2) by changing the weight ratio of Se and S powder. The as-grown monolayer MoS2(1-x)Se2xalloys present continuously high crystal quality in terms of Raman and PL measurements. Furthermore, to visible light (532 nm), the MoS2(1-x)Se2xbased photodetectors display wonderful photoresponse with a fast response of less than 50 ms. Our work may be usedful in directing the synthesis of TMDs alloys as well as their optoelectronic applications.Entities:
Keywords: MoS2(1−x)Se2x; alloy; chemical vapor deposition; photodetectors; transition metal dichalcogenides
Year: 2021 PMID: 33975284 DOI: 10.1088/1361-6528/ac0026
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874