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Cadmium and Zinc Alloyed Cu-In-S Nanocrystals and Their Optical Properties

机译:镉和锌合金的Cu-In-S纳米晶体及其光学性质

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摘要

Cadmium (Cd) and zinc (Zn) alloyed copper-indium-sulfide (Cu-In-S or CIS) nanocrystals (NCs) in several nanometers were prepared using thermal decomposition methods, and the effects of Cd and Zn on optical properties, including the tuning of NC photoluminescence (PL) wavelength and quantum yield (QY), were investigated. It was found that incorporation of Cd into CIS enhances the peak QY of NCs whereas zinc alloying diminishes the peak. In contrast with Zn alloying, Cd alloying does not result in a pronounced luminescence blue shift. The further PL decay study suggests that Cd alloying reduces surface or intrinsic defects whereas alloying with Zn increases the overall number of defects.
机译:使用热分解方法制备了几个纳米的镉(Cd)和锌(Zn)合金化铜铟硫(Cu-In-S或CIS)纳米晶体(NCs),并且Cd和Zn对光学性能的影响包括研究了NC光致发光(PL)波长和量子产率(QY)的调谐。发现将Cd掺入CIS可以增强NCs的峰QY,而锌合金化则可以降低峰。与Zn合金化相反,Cd合金化不会导致明显的发光蓝移。进一步的PL衰减研究表明,Cd合金化可减少表面或固有缺陷,而与Zn合金化可增加缺陷的总数。

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