| Literature DB >> 29576659 |
Max Schmallegger1, Georg Gescheidt1.
Abstract
ABSTRACT: We have investigated the photo-induced reduction of Cu2+-Cu0 using benzil/triethylamine mixtures. The formation of elemental Cu is indicated by the appearance of its characteristic plasmon absorption peaks at 515 nm and 620 nm. Importantly, the nature of the counterion of the Cu2+ salt affects the reduction process. In the presence of Cl-, the reduction proceeds faster than with SO42-. Photo-induced electron transfer between excited benzil and triethylamine leads to the benzil radical anion, which acts as the reducing agent for Cu2+ and generates Cu0.Entities:
Keywords: Metal reduction; Photo-induced electron transfer; Radicals; Spectroscopy
Year: 2018 PMID: 29576659 PMCID: PMC5859703 DOI: 10.1007/s00706-017-2085-7
Source DB: PubMed Journal: Monatsh Chem ISSN: 0026-9247 Impact factor: 1.451

Fig. 1UV–Vis spectrum obtained upon photolysis of 1/2 and CuSO4 (a) or CuCl2 (b); the arrows represent the irradiation wavelength (365 nm)
Fig. 2Time trace of the formation of colloidal copper monitored at 515 nm and 620 nm upon photolysis of the 1/2 system and CuCl2 or CuSO4

Fig. 3cw-EPR spectrum of 1·− obtained on the reaction of 1/2 in CH3CN under continuous irradiation; experimental (left) and simulation (right)
Hyperfine coupling constants of 1·− in CH3CN/2
| Position | hfc/mT | |
|---|---|---|
| CH3CN | Literature [ | |
| 0.103 | 0.099 | |
| 0.039 | 0.036 | |
| 0.108 | 0.112 | |


Fig. 4Transient absorption spectra of radicals produced by photolysis of 1 in CH3CN (left) and CH3CN/2 0.2 µs after the laser pulse. See text for the assignment of the absorption bands