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Photophysical properties of zinc carboxy phthalocyanines-quantum dot conjugates

机译:锌羧基酞菁 - 量子点共轭物的光物理性质

摘要

This thesis presents work based on the interactions of water soluble caboxylated zinc phthalocyanines (Pcs) and coreshell quantum dots (QDs). The Pcs are ZnPc(COOH)₈ and ZnPc(COOH)₄ and coreshell QDs are CdTe@ZnS-GSH. GSH = L-glutathione. Characterization and photophysical studies of conjugates were carried out. The approach of coordinating Pcs to QDs was achieved using an organic cross linker, N-N’-dicyclohexylcarbodiimide (DCC) at pH 10 at room temperature. Employing atomic force microscopy (AFM), transmission electron microscopy (TEM), X-ray diffraction (XRD), Raman, infrared and X-ray photoelectron spectroscopies, the formation of the conjugates was confirmed. Upon conjugation with Pc derivatives, the fluorescence quantum yield of CdTe@ZnS-GSH decreased due to energy transfer from the QDs to the Pc. The average fluorescence lifetime of the CdTe@ZnS-GSH QD also decreased upon conjugation. The föster resonance energy transfer (FRET) behaviour of CdTe@ZnS-GSH-ZnPc(COOH)₄ conjugates was compared to that of CdTe@ZnS-GSH-ZnPc(COOH)₈. Higher FRET efficiencies were observed for CdTe@ZnS-GSH-ZnPc(COOH)₄-mixed or CdTe@ZnS-GSH-ZnPc(COOH)₄-linked compared to the corresponding CdTe@ZnS-GSH-ZnPc(COOH)₈-mixed or CdTe@ZnS-GSH-ZnPc(COOH)₈-linked. Triplet quantum yield (ΦT) and lifetime (ΤT) of ZnPc(COOH)₈ were found to increase in the presence of coreshell QDs. Though the singlet quantum yield (ΦΔ) value of ZnPc(COOH)8 was lower than ΦT , there was a slight upsurge in the ΦT in the presence of QDs.
机译:本文提出了基于水溶性羧氧基化锌酞菁(Pcs)和核壳量子点(QDs)相互作用的研究。 Pcs为ZnPc(COOH)3和ZnPc(COOH)3,核壳量子点为CdTe @ ZnS-GSH。 GSH = L-谷胱甘肽。进行了结合物的表征和光物理研究。在室温下,使用有机交联剂N-N’-二环己基碳二亚胺(DCC)实现了将Pcs与QD配位的方法。使用原子力显微镜(AFM),透射电子显微镜(TEM),X射线衍射(XRD),拉曼光谱,红外和X射线光电子能谱,证实了缀合物的形成。与Pc衍生物共轭后,由于能量从量子点转移到Pc,CdTe @ ZnS-GSH的荧光量子产率下降。 CdTe @ ZnS-GSH QD的平均荧光寿命在缀合后也会降低。比较了CdTe @ ZnS-GSH-ZnPc(COOH)₄共轭物的Föster共振能量转移(FRET)行为与CdTe @ ZnS-GSH-ZnPc(COOH)₈的共轭能量转移行为。混合的CdTe @ ZnS-GSH-ZnPc(COOH)₈混合或CdTe @ ZnS-GSH-ZnPc(ZnOHc₄)混合的FRET效率高于相应的CdTe @ ZnS-GSH-ZnPc(COOH)₈混合的FRET效率。或CdTe @ ZnS-GSH-ZnPc(COOH)3-连接。发现在存在壳壳量子点的情况下,ZnPc(COOH)3的三重态量子产率(ΦT)和寿命(ΤT)会增加。尽管ZnPc(COOH)8的单重量子产率(ΦΔ)值低于ΦT,但是在存在QD的情况下,ΦT略有上升。

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  • 作者

    Sekhosana Kutloano Edward;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 English
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