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金纳米粒子嵌入介电薄膜中的等离子体介导的电子转移和温度相关的电子-声子散射。

Plasmon Mediated Electron Transfer and Temperature Dependent Electron-Phonon Scattering in Gold Nanoparticles Embedded in Dielectric Films.

机构信息

Institute of Nano Science and Technology, Knowledge City, Sector 81, SAS Nagar, Punjab, 140306, India.

Present address: S. N. Bose National Centre for Basic Sciences, Kolkata, India.

出版信息

Chemphyschem. 2022 Aug 17;23(16):e202200181. doi: 10.1002/cphc.202200181. Epub 2022 Jun 23.

Abstract

Excitation of localized surface plasmon resonance in metal nanoparticles (NPs) embedded in a glassy matrix generates hot electrons, which can be extracted for different optoelectronic applications. The insights of plasmon relaxation dynamics with varying surrounding dielectric environments and temperature dependence electron-phonon scattering process in gold (Au) NPs are still not very clear. Here, we have employed ultrafast transient absorption (TA) spectroscopy to explore the hot plasmon mediated electron transfer (PMET) and electron-phonon dynamics of photo-excited Au NPs in glassy film matrix with variable SiO /TiO compositions at cryogenic (5 K) to room temperature (300 K). Herein, we have chosen two pump excitation wavelengths (400 and 700 nm). The 400 nm excitation (d→sp) generates hot electron and the 700 nm excitation (sp→sp) provide information of direct plasmon relaxation. Drastic reduction of the transient signal of Au NPs in the high TiO content film as compared to pure SiO confirm hot electron transfer (HET) from Au plasmon to TiO . Electron-phonon scattering time constant (τ ) of Au NPs in the glassy film is found to be faster in presence of TiO due to facile electron transfer/injection. Temperature dependent TA studies suggest that electron-phonon scattering time decreases with temperature. These findings would assist to develop more advanced photo-voltaic, opto-electronic and quantum optic-based devices using the plasmonic metal NPs.

摘要

在玻璃基质中嵌入的金属纳米粒子(NPs)中局部表面等离子体共振的激发会产生热电子,这些热电子可以被提取用于不同的光电应用。在不同的周围介电环境和温度相关的电子-声子散射过程中,金(Au)NPs 中等离子体弛豫动力学的深入了解仍然不是很清楚。在这里,我们采用超快瞬态吸收(TA)光谱技术,在低温(5 K)至室温(300 K)范围内,研究了玻璃状薄膜基质中 SiO/TiO 组成变化时,Au NPs 的热等离子体介导的电子转移(PMET)和光激发 Au NPs 的电子-声子动力学。在这里,我们选择了两个泵浦激发波长(400 和 700nm)。400nm 激发(d→sp)产生热电子,而 700nm 激发(sp→sp)提供直接等离子体弛豫的信息。与纯 SiO 相比,高 TiO 含量薄膜中 Au NPs 的瞬态信号急剧减少,这证实了从 Au 等离子体到 TiO 的热电子转移(HET)。在玻璃状薄膜中,由于电子转移/注入更容易,Au NPs 的电子-声子散射时间常数(τ)在存在 TiO 时更快。温度相关的 TA 研究表明,电子-声子散射时间随温度降低而减小。这些发现将有助于开发更先进的基于等离子体金属 NPs 的光电器件、光电和量子光学器件。

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