Issue 10, 2023

Revisiting photocyclization of the donor–acceptor stenhouse adduct: missing pieces in the mechanistic jigsaw discovered

Abstract

Donor–acceptor Stenhouse adducts (DASA) have recently emerged as a class of visible-light-induced photochromic molecular switches, but their photocyclization mechanism remains puzzling and incomplete. In this work, we carried out MS-CASPT2//SA-CASSCF calculations to reveal the complete mechanism of the dominant channels and possible side reactions. We found that a new thermal-then-photo isomerization channel, i.e., EEZEZZEZE, other than the commonly accepted EEZEEEEZE channel, is dominant in the initial step. Besides, our calculations rationalized why the expected byproducts ZEZ and ZEE are unobserved and proposed a competitive stepwise channel for the final ring-closure step. The findings here redraw the mechanistic picture of the DASA reaction by better accounting for experimental observations, and more importantly, provide critical physical insight in understanding the interplay between thermal- and photo-induced processes widely present in photochemical synthesis and reactions.

Graphical abstract: Revisiting photocyclization of the donor–acceptor stenhouse adduct: missing pieces in the mechanistic jigsaw discovered

Supplementary files

Article information

Article type
Paper
Submitted
02 Nov 2022
Accepted
08 Feb 2023
First published
09 Feb 2023

Phys. Chem. Chem. Phys., 2023,25, 7417-7422

Revisiting photocyclization of the donor–acceptor stenhouse adduct: missing pieces in the mechanistic jigsaw discovered

Y. Li, C. Zhu, F. Gu and F. Liu, Phys. Chem. Chem. Phys., 2023, 25, 7417 DOI: 10.1039/D2CP05143E

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