Exciton and vibrational dynamics of MAu24(SR)18 (M=Pd, Pt) nanoclusters

Author:

Wu Yanzhen1,Liu Xu2,Kong Jie1,Zhang Wei1,Zhu Yan2,Zhou Meng1

Affiliation:

1. Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China a , Hefei 230026, China

2. Key Lab of Mesoscopic Chemistry of MOE and Jiangsu Key Lab of Vehicle Emissions Control, School of Chemistry and Chemical Engineering, Nanjing University b , Nanjing 210093, China

Abstract

The optical properties of doped metal nanoclusters (NCs) have stimulated great research interests because of their applications in biosensing and photocatalysis. The photoluminescence and excited state dynamics of MAu24(SR)18 are complicated and the detailed mechanism has not been fully understood. Here, we investigate the exciton and vibrational dynamics of two doped NCs MAu24(SR)18 (M=Pd, Pt; SR stands for phenylethanethiolate) by ultrafast spectroscopy. In contrast to the parent Au25(SR)18 NCs, Pd and Pt doping significantly reduce the exciton lifetime by several orders of magnitude. We find that the ultrashort exciton lifetimes of PtAu24 (5 ps) and PdAu24 (30 ps) are ascribed to the ultrasmall energy gap (Eg=0.3 eV). In both two doped NCs, we observe significant coherent vibrations (2.4 THz) that arise from the metal core, which indicates these oscillations can survive regardless of the short exciton lifetime. Unravelling the effect of foreign atom doping on the exciton and vibrational dynamics of metal NCs will provide new insight into their optical properties and help designing these molecular-like nanostructures for specific applications.

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry

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