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Spectral and photochemical properties of hybrid organic-inorganic nanosystems based on CdS quantum dots and a styrylquinoline ligand

机译:基于CdS量子点和苯乙烯基喹啉配体的有机-无机杂化纳米系统的光谱和光化学性质

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摘要

The kinetics of photolysis of a styrylquinoline (SQ) derivative as the photochromic ligand in organic-inorganic hybrid nanosystems (HNSs) with the core composed of CdS quantum dots (QDs) has been studied for the first time as a function of the number of ligand molecules in the HNS shell, which varied from 1 to 10. The hybrid nanosystems have been synthesized in the microwave-assisted mode according to the single-step injection-free procedure. It has been shown that high quantum yields of photoisomerization of the SQ ligand are conserved in the HNS. In the early stages of the photolysis, regardless of the number of SQ ligand molecules in the HNS shell, the kinetics obeys the equation for the photolysis of the monomolecular system (model SQ photochrome) with allowance for the absorption due to QDs as an inert shutter. During the course of long-term photolysis, the quantum dots undergo photodegradation to be completely decomposed. According to the principal component analysis data, several photoproducts with different absorption spectra are formed at the intermediate times of the HNS photolysis.
机译:首次研究了以CdS量子点(QDs)为核心的有机-无机杂化纳米系统(HNSs)中作为光致变色配体的苯乙烯基喹啉(SQ)衍生物的光解动力学。 HNS壳中的分子数量从1到10不等。杂化纳米系统已经按照单步无注射程序在微波辅助模式下合成。已经显示出在HNS中SQ配体的光异构化的高量子产率是保守的。在光解的早期阶段,无论HNS壳中SQ配体分子的数量如何,动力学都遵循单分子系统(SQ型光致变色剂)的光解方程,并考虑到作为惰性快门的QD的吸收。 。在长期光解的过程中,量子点经历光降解而被完全分解。根据主成分分析数据,在HNS光解的中间时间形成了几种具有不同吸收光谱的光产物。

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