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作 者:Jake Huang Jake Huang(Polytechnic School, Pasadena, CA, USA)
机构地区:[1]Polytechnic School, Pasadena, CA, USA
出 处:《Journal of Materials Science and Chemical Engineering》2024年第11期24-30,共7页材料科学与化学工程(英文)
摘 要:The unique structural and electrical properties of two-dimensional van der Waals (vdW) material, nickel-phosphorus trisulfide (NiPS3), render it a promising compound for its adaptation in advanced technology applications. In order to explore its potential practical applications in optoelectronic, spintronic, and energy conversion technologies, this work has explored some of the fundamental aspects defining the excitonic behavior of NiPS3, such as bandgap characteristics, antiferromagnetism, and semiconductor nature derived from its layered structure. This study of the properties of NiPS3 would also outline problems or difficulties that must be faced upon its use in new technologies. This also indicates the demand for further research on NiPS3 to fulfill or realize its promise in technological advancement more fully.The unique structural and electrical properties of two-dimensional van der Waals (vdW) material, nickel-phosphorus trisulfide (NiPS3), render it a promising compound for its adaptation in advanced technology applications. In order to explore its potential practical applications in optoelectronic, spintronic, and energy conversion technologies, this work has explored some of the fundamental aspects defining the excitonic behavior of NiPS3, such as bandgap characteristics, antiferromagnetism, and semiconductor nature derived from its layered structure. This study of the properties of NiPS3 would also outline problems or difficulties that must be faced upon its use in new technologies. This also indicates the demand for further research on NiPS3 to fulfill or realize its promise in technological advancement more fully.
关 键 词:NiPS3 2D Materials Van der Waals Materials Bandgap Engineering SEMICONDUCTORS SPINTRONICS and Materials Science
分 类 号:TB3[一般工业技术—材料科学与工程]
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