Accumulation of Four Electrons on a Terphenyl (Bis)disulfide
Date Issued
2022-01-01
Author(s)
DOI
10.1002/chem.202202386
Abstract
The activation of N2, CO2 or H2O to energy-rich products relies on multi-electron transfer reactions, and consequently it seems desirable to understand the basics of light-driven accumulation of multiple redox equivalents. Most of the previously reported molecular acceptors merely allow the storage of up to two electrons. We report on a terphenyl compound including two disulfide bridges, which undergoes four-electron reduction in two separate electrochemical steps, aided by a combination of potential compression and inversion. Under visible-light irradiation using the organic super-electron donor tetrakis(dimethylamino)ethylene, a cascade of light-induced reaction steps is observed, leading to the cleavage of both disulfide bonds. Whereas one of them undergoes extrusion of sulfur to result in a thiophene, the other disulfide is converted to a dithiolate. These insights seem relevant to enhance the current fundamental understanding of photochemical energy storage.
File(s)![Thumbnail Image]()
Loading...
Name
Chemistry_A_European_J_-_2022_-_Schmid_-_Accumulation_of_Four_Electrons_on_a_Terphenyl__Bis_disulfide.pdf
Size
2.05 MB
Format
Adobe PDF
Checksum
(MD5):760e4c9d20ad63aee35178abb0cee513