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聚合物基质中胶体II-VI族纳米晶体光致发光的光诱导增强

Photoinduced Enhancement of Photoluminescence of Colloidal II-VI Nanocrystals in Polymer Matrices.

作者信息

Dzhagan Volodymyr, Stroyuk Oleksandr, Raievska Oleksandra, Isaieva Oksana, Kapush Olga, Selyshchev Oleksandr, Yukhymchuk Volodymyr, Valakh Mykhailo, Zahn Dietrich R T

机构信息

V. Lashkaryov Institute of Semiconductors Physics, National Academy of Sciences of Ukraine, 01601 Kyiv, Ukraine.

Department of Physics, Taras Shevchenko National University of Kyiv, 64 Volodymyrs'ka St., 01601 Kyiv, Ukraine.

出版信息

Nanomaterials (Basel). 2020 Dec 21;10(12):2565. doi: 10.3390/nano10122565.

Abstract

The environment strongly affects both the fundamental physical properties of semiconductor nanocrystals (NCs) and their functionality. Embedding NCs in polymer matrices is an efficient way to create a desirable NC environment needed for tailoring the NC properties and protecting NCs from adverse environmental factors. Luminescent NCs in optically transparent polymers have been investigated due to their perspective applications in photonics and bio-imaging. Here, we report on the manifestations of photo-induced enhancement of photoluminescence (PL) of aqueous colloidal NCs embedded in water-soluble polymers. Based on the comparison of results obtained on bare and core/shell NCs, NCs of different compounds (CdSe, CdTe, ZnO) as well as different embedding polymers, we conclude on the most probable mechanism of the photoenhancement for these sorts of systems. Contrary to photoenhancement observed earlier as a result of surface photocorrosion, we do not observe any change in peak position and width of the excitonic PL. Therefore, we suggest that the saturation of trap states by accumulated photo-excited charges plays a key role in the observed enhancement of the radiative recombination. This suggestion is supported by the unique temperature dependence of the trap PL band as well as by power-dependent PL measurement.

摘要

环境对半导体纳米晶体(NCs)的基本物理性质及其功能都有强烈影响。将NCs嵌入聚合物基质是创造定制NCs性质所需的理想NC环境并保护NCs免受不利环境因素影响的有效方法。由于其在光子学和生物成像方面的潜在应用,光学透明聚合物中的发光NCs已得到研究。在此,我们报道了嵌入水溶性聚合物中的水性胶体NCs光致发光(PL)增强的表现。基于对裸NCs和核/壳NCs、不同化合物(CdSe、CdTe、ZnO)的NCs以及不同嵌入聚合物所获结果的比较,我们得出了这类系统光增强最可能的机制。与之前因表面光腐蚀而观察到的光增强相反,我们未观察到激子PL的峰位和宽度有任何变化。因此,我们认为累积的光激发电荷使陷阱态饱和在观察到的辐射复合增强中起关键作用。这一观点得到了陷阱PL带独特的温度依赖性以及功率相关PL测量的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e3e/7766198/78e4f0d1ce5c/nanomaterials-10-02565-g001.jpg

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