Zhou Li, Huang Qijia, Xia Younan
The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, Georgia 30332, United States.
School of Physics and Technology, Wuhan University, Wuhan, Hubei 430072, P. R. China.
Chem Rev. 2024 Jul 24;124(14):8597-8619. doi: 10.1021/acs.chemrev.4c00165. Epub 2024 Jun 3.
Plasmon refers to the coherent oscillation of all conduction-band electrons in a nanostructure made of a metal or a heavily doped semiconductor. Upon excitation, the plasmon can decay through different channels, including nonradiative Landau damping for the generation of plasmon-induced energetic carriers, the so-called hot electrons and holes. The energetic carriers can be collected by transferring to a functional material situated next to the plasmonic component in a hybrid configuration to facilitate a range of photochemical processes for energy or chemical conversion. This article centers on the recent advancement in generating and utilizing plasmon-induced hot electrons in a rich variety of hybrid nanostructures. After a brief introduction to the fundamentals of hot-electron generation and decay in plasmonic nanocrystals, we extensively discuss how to collect the hot electrons with various types of functional materials. With a focus on plasmonic nanocrystals made of metals, we also briefly examine those based upon heavily doped semiconductors. Finally, we illustrate how site-selected growth can be leveraged for the rational fabrication of different types of hybrid nanostructures, with an emphasis on the parameters that can be experimentally controlled to tailor the properties for various applications.
表面等离子体激元是指由金属或重掺杂半导体构成的纳米结构中所有导带电子的相干振荡。在激发时,表面等离子体激元可以通过不同的通道衰减,包括用于产生表面等离子体激元诱导的高能载流子(即所谓的热电子和空穴)的非辐射朗道阻尼。通过转移到混合结构中位于等离子体激元组件旁边的功能材料上,可以收集高能载流子,以促进一系列用于能量或化学转化的光化学过程。本文聚焦于在各种混合纳米结构中产生和利用表面等离子体激元诱导的热电子的最新进展。在简要介绍了等离子体激元纳米晶体中热电子产生和衰减的基本原理之后,我们广泛讨论了如何用各种类型的功能材料收集热电子。以金属制成的等离子体激元纳米晶体为重点,我们还简要研究了基于重掺杂半导体的那些晶体。最后,我们说明了如何利用位点选择生长来合理制造不同类型的混合纳米结构,重点是可以通过实验控制的参数,以针对各种应用定制其性能。