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首页> 外文期刊>Journal of Electronic Materials >Interfacial Effects in the Relaxation Dynamics of Silver Nanometal-Glass Composites Probed by Transient Grating Spectroscopy
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Interfacial Effects in the Relaxation Dynamics of Silver Nanometal-Glass Composites Probed by Transient Grating Spectroscopy

机译:瞬态光栅光谱法研究银纳米金属-玻璃复合材料弛豫动力学的界面效应

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Relaxation dynamics of silver nanoparticles (NPs) embedded in glass have been studied by picosecond time-resolved transient grating (TG) spectroscopy. Phosphate-based glasses were prepared by melting and heat-treatment processes by which two different nanometal-glass composites were produced. The first is a glass system containing silver and tin in which Ag NPs are embedded in the matrix upon heat treatment. The second is a heat-treated silver-doped glass with spectroscopic indications of Ag+–Ag0 pairs located at or near the surface of the NPs. The time evolution of the light-induced TG for the Ag/Sn-doped glass shows an uncommon relaxation on the nanosecond time scale. Such behavior is explained in terms of energy transfer processes between polaronic and/or excitonic states in the near-interface region of the glass matrix and the NPs. In contrast, a faster monotonic relaxation is observed for the Ag-doped nanocomposite. This result is attributed to Ag NP → Ag+–Ag0 plasmon resonance energy transfer. Keywords Energy transfer - nanoparticles - phosphate glass - silver
机译:通过皮秒时间分辨瞬态光栅(TG)光谱研究了嵌入玻璃中的银纳米颗粒(NPs)的弛豫动力学。通过熔融和热处理工艺制备了磷酸盐基玻璃,从而生产出两种不同的纳米金属-玻璃复合材料。第一种是含有银和锡的玻璃体系,其中经过热处理将Ag NP嵌入基质中。第二种是经过热处理的掺银玻璃,在光谱上可以看到位于NP表面或附近的Ag + –Ag 0 对。 Ag / Sn掺杂玻璃的光诱导TG的时间演变在纳秒时间尺度上显示出罕见的松弛。根据玻璃基质和NPs的近界面区域中的极化和/或激子态之间的能量转移过程来解释这种行为。相反,观察到Ag掺杂的纳米复合材料具有更快的单调弛豫。该结果归因于Ag NP→Ag + –Ag 0 等离子体激元共振能量转移。关键词能量转移纳米粒子磷酸盐玻璃银

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