Recent developments in synthesis, properties, and applications of 2D Janus MoSSe and MoSe x S (1- x ) alloys

被引:11
|
作者
Lakshmy, Seetha [1 ]
Mondal, Brinti [2 ]
Kalarikkal, Nandakumar [1 ,3 ,4 ]
Rout, Chandra Sekhar [5 ,6 ]
Chakraborty, Brahmananda [5 ,7 ,8 ]
机构
[1] Mahatma Gandhi Univ, Int & Interuniv Ctr Nanosci & Nanotechnol, Kottayam 686560, Kerala, India
[2] Indian Inst Technol, Dept Energy Sci & Engn, Bombay 400076, India
[3] Mahatma Gandhi Univ, Sch Pure & Appl Phys, Kottayam 686560, India
[4] Mahatma Gandhi Univ, Sch Nanosci & Nanotechnol, Kottayam 686560, India
[5] Jain Deemed Univ, Ctr Nano & Mat Sci, Jain Global Campus,Kanakapura Rd, Bangalore 562112, India
[6] Chungbuk Natl Univ, Dept Chem Engn, Cheongju 28644, South Korea
[7] Bhabha Atom Res Ctr, High Pressure & Synchrotron Radiat Phys Div, Trombay 400085, India
[8] Homi Bhabha Natl Inst, Mumbai 400094, India
来源
ADVANCED POWDER MATERIALS | 2024年 / 3卷 / 04期
基金
新加坡国家研究基金会;
关键词
MoSSe; 2D material; TMDs; Janus structure; Alloying; Sensing; Optoelectronics; TRANSITION-METAL DICHALCOGENIDES; HYDROGEN EVOLUTION REACTION; Z-SCHEME; MOS2(1-X)SE2X ALLOY; PROMISING PHOTOCATALYST; ELECTRONIC-STRUCTURE; OPTICAL-PROPERTIES; BAND-GAP; MONOLAYER; NANOSHEETS;
D O I
10.1016/j.apmate.2024.100204
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The Janus MoSSe and alloy MoSxSe(1-x), belonging to the family of two-dimensional (2D) transition metal dichalcogenides (TMDs), have gained significant attention for their potential applications in nanotechnology. The unique asymmetric structure of Janus MoSSe provides intriguing possibilities for tailored applications. The alloy MoSxSe(1-x) offers a tunable composition, allowing for the fine-tuning of the properties to meet specific requirements. These materials exhibit remarkable mechanical, electrical, and optical properties, including a tunable band gap, high absorption coefficient, and photoconductivity. The vibrational and magnetic properties also make it a promising candidate for nanoscale sensing and magnetic storage applications. Properties of these materials can be precisely controlled through different approaches such as size-dependent properties, phase engineering, doping, alloying, defect and vacancy engineering, intercalation, morphology, and heterojunction or hybridisation. Various synthesis methods for 2D Janus MoSSe and alloy MoSxSe(1-x) are discussed, including hydro/solvothermal, chemical vapour transport, chemical vapour deposition, physical vapour depositio, and other approaches. The review also presents the latest advancements in Janus and alloy MoSSe-based applications, such as chemical and gas sensors, surface-enhanced Raman spectroscopy, field emission, and energy storage. Moreover, the review highlights the challenges and future directions in the research of these materials, including the need for improved synthesis methods, understanding of their stability, and exploration of new applications. Despite the early stages of research, both the MoSSe-based materials have shown significant potential in various fields, and this review provides valuable insights for researchers and engineers interested in exploring its potential.
引用
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页数:45
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