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Photoluminescence Quenching and Enhanced Optical Conductivity of P3HT-Derived Ho3+-Doped ZnO Nanostructures

机译:P3HT掺杂的Ho3 +掺杂的ZnO纳米结构的光致发光猝灭和增强的电导率

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摘要

In this article, we demonstrate the surface effect and optoelectronic properties of holmium (Ho3+)-doped ZnO in P3HT polymer nanocomposite. We incorporated ZnO:Ho3+ (0.5 mol% Ho) nanostructures in the pristine P3HT-conjugated polymer and systematically studied the effect of the nanostructures on the optical characteristics. Detailed UV-Vis spectroscopy analysis revealed enhanced absorption coefficient and optical conductivity in the P3HT-ZnO:Ho3+ film as compared to the pristine P3HT. Moreover, the obtained photoluminescence (PL) results established the improvement of exciton dissociation as a result of ZnO:Ho3+ nanostructures inclusion. The occurrence of PL quenching is the result of enhanced charge transfer due to ZnO:Ho3+ nanostructures in the polymer, whereas energy transfer from ZnO:Ho3+ to P3HT was verified. Overall, the current investigation revealed a systematic tailoring of the optoelectronic properties of pristine P3HT after inclusion of ZnO:Ho3+ nanostructures, thus opening brilliant perspectives for applications in various optoelectronic devices.
机译:在本文中,我们证明了P3HT聚合物纳米复合物中掺((Ho 3 + )的ZnO的表面效应和光电性能。我们将ZnO:Ho 3 + (0.5mol%Ho)纳米结构掺入原始的P3HT共轭聚合物中,并系统地研究了纳米结构对光学特性的影响。详细的UV-Vis光谱分析表明,与原始P3HT相比,P3HT-ZnO:Ho 3 + 膜的吸收系数和光导率有所提高。此外,获得的光致发光(PL)结果证实了ZnO:Ho 3 + 纳米结构的包裹体对激子解离的改善。 PL猝灭的发生是由于聚合物中ZnO:Ho 3 + 纳米结构增强了电荷转移的结果,而ZnO:Ho 3 + 到P3HT的能量转移是已验证。总体而言,当前的研究表明,在包含ZnO:Ho 3 + 纳米结构后,对原始P3HT的光电性能进行了系统的调整,从而为各种光电器件的应用开辟了光辉的前景。

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