Recent progress on fabrication, spectroscopy properties, and device applications in Sn-doped CdS micro-nano structuresOACSTPCDEI
One-dimensional semiconductor materials possess excellent photoelectric properties and potential for the construction of integrated nanodevices. Among them, Sn-doped CdS has different micro-nano structures, including nanoribbons,nanowires, comb-like structures, and superlattices, with rich optical microcavity modes, excellent optical properties, and a wide range of application fields. This article reviews the research progress of various micrometer structures of Sn-doped CdS, systematically elaborates the effects of different growth conditions on the preparation of Sn-doped CdS micro-nano structures, as well as the spectral characteristics of these structures and their potential applications in certain fields. With the continuous progress of nanotechnology, it is expected that Sn-doped CdS micro-nano structures will achieve more breakthroughs in the field of optoelectronics and form cross-integration with other fields, jointly promoting scientific, technological, and social development.
Bo Cao;Ye Tian;Huan Fei Wen;Hao Guo;Xiaoyu Wu;Liangjie Li;Zhenrong Zhang;Lai Liu;Qiang Zhu;Jun Tang;Jun Liu;
State Key Laboratory of Dynamic Measurement Technology,School of Semiconductors and Physics,North University of China,Taiyuan 030051,China Shanxi Province Key Laboratory of Quantum Sensing and Precision Measurement,North University of China,Taiyuan 030051,ChinaSchool of Instrument Science and Technology,Xi''an Jiaotong University,Xi''an 710049,China
电子信息工程
Sn-doped CdSmicro-nano structuresuperlatticesoptical microcavity
《Journal of Semiconductors》 2024 (009)
P.7-27 / 21
supported by National Natural Science Foundation of China (52275551);Shanxi Scholarship Council of China (2021-117)。
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