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LABELING CARBON NANOTUBES WITH LUMINESCENCE PROBES

机译:标记具有发光现象的碳纳米管

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Single-wall carbon nanotubes (SWNTs) were functionalized by oligomeric species containing derivatized pyrenes. Absorption and emission properties of the pyrene moieties tethered to the functionalized SWNTs were studied in homogeneous solution. The absorption spectra suggest no significant ground-state complexation between the pyrenes and nanotubes. The fluorescence and fluorescence excitation results show that the tethered pyrenes form "intramolecular" (intra-nanotube) excimers and that the excimer formation is predominantly dynamic in nature. The time-resolved fluorescence results show that the pyrene monomer and excimer emissions are significantly quenched by the attached SWNTs. The quenching is explained in terms of a mechanism in which carbon nanotubes serve as acceptors for excited-state energy transfers from the tethered pyrene moieties.
机译:单壁碳纳米管(SWNTs)通过包含衍生化pyr的低聚物质进行功能化。在均相溶液中研究了与官能化SWNT相连的the部分的吸收和发射性质。吸收光谱表明the与纳米管之间没有明显的基态络合。荧光和荧光激发结果表明,受束缚的form形成“分子内”(纳米管内)准分子,并且该准分子的形成在本质上主要是动态的。时间分辨的荧光结果表明,the单体和受激准分子的发射被连接的SWNT显着淬灭。用碳纳米管充当受束缚的mo部分的激发态能量转移的受体的机理来解释猝灭。

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