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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hole scavenging and photo-stimulated recombination of electron - Hole pairs in aqueous TiO2 nanoparticles
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Hole scavenging and photo-stimulated recombination of electron - Hole pairs in aqueous TiO2 nanoparticles

机译:水性TiO2纳米粒子中电子-空穴对的空穴清除和光激发重组。

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摘要

It is shown that 532 and 1064 nm laser photoexcitation of trapped electrons generated by 355 nm photolysis of aqueous titania (TiO2) nanoparticles causes rapid photobleaching of their absorbance band in the visible and near-IR. This photobleaching occurs within the duration of the laser pulse (3 ns fwhm); it is caused by photoinduced electron detrapping followed by rapid recombination of the resulting free electron and a trapped hole. The quantum yield for the electron photobleaching is ca. 0.28 for 532 nm and ca. 0.024 for 1064 nm photoexcitation. Complete separation of the spectral contributions from trapped electron and hole is demonstrated using glycerol as a selective hole scavenger. When glycerol is added to the solution, some light-absorbing holes are scavenged promptly within the duration of the 355 nm photoexcitation pulse, some are scavenged at a slower rate over the first 200 ns after the 355 nm pulse, and the rest are not scavenged, even at high concentration of the scavenger (>10 vol.%). A reaction with chemi- and physisorbed glycerol would account for the prompt and the slow hole decay, respectively. The implications of these results are discussed.
机译:结果表明,用532和1064 nm激光对TiO2纳米颗粒的355 nm光解所产生的捕获电子进行光激发会导致其可见光和近红外吸收带的快速光漂白。这种光漂白发生在激光脉冲的持续时间内(3 ns fwhm);它是由光诱导的电子去俘获,然后所产生的自由电子和被俘获的空穴快速复合引起的。电子光致漂白的量子产率为约3。 532 nm和0.28时为0.28。 1064 nm光激发为0.024。使用甘油作为选择性的空穴清除剂,证明了能将捕获的电子和空穴的光谱完全分离。将甘油添加到溶液中后,在355 nm光激发脉冲的持续时间内会迅速清除一些光吸收孔,在355 nm脉冲后的前200 ns内以较慢的速率清除一些光吸收孔,而其余的则未被清除,即使清除剂的浓度较高(> 10 vol。%)。与化学和物理吸附甘油的反应将分别解释孔的迅速和缓慢衰变。讨论了这些结果的含义。

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