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首页> 外文期刊>High Energy Chemistry >Assembly Principles and Relaxation Processes in Nanosized Heterogeneous Complexes: Multiporphyrin Structures and CdSe/ZnS Nanocrystals
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Assembly Principles and Relaxation Processes in Nanosized Heterogeneous Complexes: Multiporphyrin Structures and CdSe/ZnS Nanocrystals

机译:纳米异质配合物中的组装原理和弛豫过程:多卟啉结构和CdSe / ZnS纳米晶体

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摘要

Based on the extra-ligand addition effect, the principles of targeted self-assembly of nanosized multiporphyrin complexes of various types with controllable geometry and composition (up to 8 tetrapyrroles) and heterogeneous composites based on trioctylphosphine oxide-stabilized CdSe/ZnS semiconductor nanocrystals and organic compounds were developed. The dynamics and mechanisms of energy and charge transfer (including electron tunneling) in such systems were studied by continuous, picosecond fluorescence (Δ1/2≈30 ps), and femtosecond transient (Δ1/2≈120 fs) spectroscopy with varying the quantitative and qualitative constitution of the composites, the temperature, and the polarity of the medium.
机译:基于超配体加合效应,具有可控制的几何形状和组成(最多8个四吡咯)的各种类型的纳米级多卟啉配合物和基于三辛基氧化膦稳定的CdSe / ZnS半导体纳米晶体和有机物的非均质复合物的靶向自组装原理开发了化合物。通过连续,皮秒荧光(Δ1/2≈30ps)和飞秒瞬变(Δ1/2≈120fs)光谱研究了这种系统中能量和电荷转移(包括电子隧穿)的动力学和机理,并改变了定量和复合材料的定性组成,温度和介质的极性。

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