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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Excitation-Dependent Ultrafast Carrier Dynamics of Colloidal TiO2 Nanorods in Organic Solvent
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Excitation-Dependent Ultrafast Carrier Dynamics of Colloidal TiO2 Nanorods in Organic Solvent

机译:胶态TiO2纳米棒在有机溶剂中的激发依赖性超快载流子动力学

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摘要

The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform was investigated by femtosecond transient absorption in a weak-excitation regime. Anisotropic TiO2 nanocrystals were excited in the UV—vis range, using different pump wavelengths, namely above (300 nm), close to (350 nm), and below (430 nm) the direct band gap of anatase TiO2. We show that the ultrafast dynamics strongly depends on excitation wavelength and determine the time constants of all the processes entering the relaxation. Moreover, we demonstrate that two transient absorption bands at 500 and 700 nm, typically attributed to trapped h~+ and e~-, respectively, are accessible only when TiO2 is photoexcited well above the band gap, while there is no evidence of such bands when TiO2 is photoexcited close to or below its band gap. In such cases the observed dynamics are attributed to trapped excitons.
机译:通过飞秒瞬态吸收在弱激励条件下研究了分散在氯仿中的有机封端的TiO2纳米棒的载流子的弛豫动力学。使用不同的泵浦波长,即高于(300 nm),接近(350 nm)和低于(430 nm)的锐钛矿型TiO2直接带隙,在UV-vis范围内激发各向异性的TiO2纳米晶体。我们表明,超快动力学在很大程度上取决于激发波长,并确定进入弛豫的所有过程的时间常数。此外,我们证明了仅当TiO2在带隙上方被光激发时,才有可能分别获得分别在500和700 nm处的两个瞬态吸收带,这通常分别归因于被捕获的h〜+和e〜-。当TiO2接近或低于其带隙时被光激发。在这种情况下,观察到的动力学归因于捕获的激子。

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