Zhou Meng, Jin Rongchao
Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA; email:
Annu Rev Phys Chem. 2021 Apr 20;72:121-142. doi: 10.1146/annurev-physchem-090419-104921. Epub 2020 Dec 9.
Understanding the excited-state dynamics of nanomaterials is essential to their applications in photoenergy storage and conversion. This review summarizes recent progress in the excited-state dynamics of atomically precise gold (Au) nanoclusters (NCs). We first discuss the electronic structure and typical relaxation pathways of Au NCs from subpicoseconds to microseconds. Unlike plasmonic Au nanoparticles, in which collective electron excitation dominates, Au NCs show single-electron transitions and molecule-like exciton dynamics. The size-, shape-, structure-, and composition-dependent dynamics in Au NCs are further discussed in detail. For small-sized Au NCs, strong quantum confinement effects give rise to relaxation dynamics that is significantly dependent on atomic packing, shape, and heteroatom doping. For relatively larger-sized Au NCs, strong size dependence can be observed in exciton and electron dynamics. We also discuss the origin of coherent oscillations and their roles in excited-state relaxation. Finally, we provide our perspective on future directions in this area.
了解纳米材料的激发态动力学对于其在光储能和光转换中的应用至关重要。本综述总结了原子精确金(Au)纳米团簇(NCs)激发态动力学的最新进展。我们首先讨论了从亚皮秒到微秒时间尺度下Au NCs的电子结构和典型弛豫途径。与以集体电子激发为主的等离子体Au纳米颗粒不同,Au NCs表现出单电子跃迁和类分子激子动力学。我们还将进一步详细讨论Au NCs中尺寸、形状、结构和组成依赖的动力学。对于小尺寸Au NCs,强量子限制效应导致弛豫动力学显著依赖于原子堆积、形状和杂原子掺杂。对于相对较大尺寸的Au NCs,在激子和电子动力学中可观察到强烈的尺寸依赖性。我们还讨论了相干振荡的起源及其在激发态弛豫中的作用。最后,我们对该领域的未来发展方向提出了看法。