量子点
玻尔半径
带隙
材料科学
光电子学
纤锌矿晶体结构
多激子产生
波长
半导体
激子
太阳能电池
铜
凝聚态物理
物理
冶金
锌
作者
M. Irshad Ahamed,K. Sathish Kumar
标识
DOI:10.2478/msp-2018-0103
摘要
Abstract Copper tin sulfide (Cu 2 SnS 3 ) is a unique semiconductor, whose nanocrystals have attracted researchers’ attention for its tunable energy bandgap and wavelength in visible and near infrared range. Quantum dots which are fabricated from this material are highly suitable for optoelectronics and solar cell applications. This paper discusses the tunable energy bandgap, exciton Bohr radius and wavelength range of wurtzite structure of Cu 2 SnS 3 quantum dots to assess the opportunity to use them in optoelectronics applications. The considerations show that the mole fraction of copper increases as energy bandgap decreases and tunable energy bandgap of this quantum dot material is inversely proportional to the wavelength.
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