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Real Time Hyperspectroscopy for Dynamical Study of Carbon Nanotubes

机译:实时高光谱技术用于碳纳米管的动力学研究

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摘要

Photoluminescence excitation mapping used routinely to characterize semiconducting single-walled carbon nanotubes (sc-SWCNTs) is extended to provide time-dependent data. A hyperspectral method based on a supercontinuum light source and an imaging detector is demonstrated with excitation and emission wavelengths spanning 600-1000 and 1050-1650 nm, respectively, at time scales <100 ms. An example of a titration experiment is given to highlight the potential offered by the technique. Specifically, the dependence of luminescence yield on acceptor concentration is tracked for 18 different chirality assigned sc-SWCNT species. Dopant-induced quenching presents a simple dependence on nanotube diameter, with larger diameter being most affected, while chirality does not appear to be a dominant factor. In a second example, the successive addition of acceptor and donor molecules leads to a modulation of luminescence intensity upon hole doping and dedoping.
机译:常规用于表征半导体单壁碳纳米管(sc-SWCNT)的光致发光激发映射得到了扩展,以提供时间相关的数据。演示了基于超连续谱光源和成像检测器的高光谱方法,其激发和发射波长分别在<100 ms的时标上跨越600-1000 nm和1050-1650 nm。给出了一个滴定实验的例子,以突出该技术提供的潜力。具体而言,对于18种不同的手性分配的sc-SWCNT物种,跟踪了发光产量对受体浓度的依赖性。掺杂剂引起的猝灭呈现出对纳米管直径的简单依赖性,其中较大直径受到最大影响,而手性似乎不是主要因素。在第二示例中,在空穴掺杂和去掺杂时,受体和供体分子的连续添加导致发光强度的调节。

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