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Photochemical Au(I)-Au(I) Bond Formation: A Battle between Intersystem Crossing and Internal Conversion
Diandong Tang1, Can Liao1, Maxwell Taub1
1Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.
Abstract:
The transition metal complex Au(CN)2- has provided experimental evidence of photoinduced bond formation between Au(I) atoms in solution. However, the underlying photochemical driving force for this bond formation reaction remains unclear. In this study, we investigate the ultrafast Au-Au bonding process in the [Au(CN)2]22- dimer using nonadiabatic dynamics simulations that incorporate intersystem crossing and internal conversion pathways. Reaction pathways and transitions among photochemically accessible singlet and triplet excited states are analyzed. Computational results indicate that intersystem crossing is the primary driving force in the early stages of ultrafast photochemical dynamics, while internal conversion among triplet states plays a critical role after the system stabilizes in a higher-lying triplet state. This work provides a mechanistic perspective on modulating photochemical reactions by tuning the relative strengths of spin-orbit coupling and nonadiabatic coupling.
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