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Influence of surface charges on the emission polarization properties of single CdSe/CdS dot-in-rods
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作者 Guo-Feng Zhang Chang-Gang Yang +9 位作者 Yong Ge Yong-Gang Peng Rui-Yun Chen Cheng-Bing Qin Yan Gao Lei Zhang Hai-Zheng Zhong Yu-Jun Zheng Lian-Tuan Xiao Suo-Tang Jia 《Frontiers of physics》 SCIE CSCD 2019年第6期73-82,共10页
We report an experimental investigation of the influence of surface charges on the emission polarization properties of single CdSe/CdS dot-in-rods(DRs),which is important for their polarization-based practical applica... We report an experimental investigation of the influence of surface charges on the emission polarization properties of single CdSe/CdS dot-in-rods(DRs),which is important for their polarization-based practical applications.By covering the single DRs with N-type semiconductor indium tin oxide(ITO)nanoparticles,the surface of single DRs is charged by ITO through interracial electron transfer.This is confirmed by the experimental observations of the reduced photoluminescence intensities and lifetimes as well as the suppressing blinking.It is found that the full width at half maximum of histogram of polarization degrees of the single DRs is broadened from 0.24(on glass)to 0.41(in ITO).In order to explain the exprimental results,the band-edge exciton fine structure of single DRs is calculated by taking into account the sample parameters,the emission polarization,and the surface charges.The calculation results show that the level ordering of the emitting states determines the polarization degrees tending to increase or decrease under the influence of surface electrons.The surface electrons can induce an increase in the spacing between the emitting levels to change the populations and thus change the polarization degrees.In addition,different numbers of surface electrons may randomly distribute on the long CdSe/CdS rods,leading to the heterogeneous influences on the single DRs causing the broadening of polarization degrees also. 展开更多
关键词 SINGLE CdSe/CdS dot-in-rods polarization properties surface charges BAND-EDGE exciton fine structure
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