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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ultrafast Dynamics of Photoexcited Hot Carrier Generation and Injection in AgNWs@TiO2@GNS Nanostructures
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Ultrafast Dynamics of Photoexcited Hot Carrier Generation and Injection in AgNWs@TiO2@GNS Nanostructures

机译:agnws @ tio2 @ gns纳米结构的光屏蔽热载波生成和注射的超快动态

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摘要

The generation and injection of hot electrons in plasmonic nanostructures have received a wide-range potential application in the next generation of ultrafast nanophotonics as well as energy harvesting, storage and conversion. In many cases, the energetic carriers with high energy beyond Fermi level are desirable for photochemical reactions due to the tremendous efficient hot electron injection. However, directly electron electron scattering lifetime observations have few reported and hot electrons generally suffer from a low generation efficiency in conventional plasmonic nanostructures. This paper reports on the fabrication of hybrid AgNWs@TiO(2)pAu core shell nanostructures and the investigation of the ultrafast dynamics of their energetic carriers based on interband and intraband excitations through transient absorption spectroscopy measurements. Finally, the different electronic transition processes are discussed in terms of ultrafast decay response, which is necessary to design proper nanostructures aimed at efficient hot electron injection.
机译:等离子体纳米结构中的热电子的产生和注入在下一代超快纳米光源和能量收集,储存和转化中接受了广泛的潜在应用。在许多情况下,由于巨大的高效热电子注入,所希望的高能量高能量高能量的载体是期望光化学反应的。然而,直接电子电子散射寿命观察几乎没有报道,并且热电子通常在常规等离子体纳米结构中遭受低产生效率。本文通过瞬态吸收光谱测量,报告了杂交Agnws @ TiO(2)Pau核心壳纳米结构的制造以及基于间带和Intramand激发的高速动态的研究。最后,在超快衰减响应方面讨论了不同的电子转换过程,这对于设计旨在有效的热电子注入的适当纳米结构是必要的。

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