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Experimental and computational electrochemistry of quinazolinespirohexadienone molecular switches - differential electrochromic vs photochromic behavior.

Authors :
Webb EW
Moerdyk JP
Sluiter KB
Pollock BJ
Speelman AL
Lynch EJ
Polik WF
Gillmore JG
Source :
Beilstein journal of organic chemistry [Beilstein J Org Chem] 2019 Oct 18; Vol. 15, pp. 2473-2485. Date of Electronic Publication: 2019 Oct 18 (Print Publication: 2019).
Publication Year :
2019

Abstract

Our undergraduate research group has long focused on the preparation and investigation of electron-deficient analogs of the perimidinespirohexadienone (PSHD) family of photochromic molecular switches for potential application as "photochromic photooxidants" for gating sensitivity to photoinduced charge transfer. We previously reported the photochemistry of two closely related and more reducible quinazolinespirohexadienones (QSHDs), wherein the naphthalene of the PSHD is replaced with a quinoline. In the present work, we report our investigation of the electrochemistry of these asymmetric QSHDs. In addition to the short wavelength and photochromic long-wavelength isomers, we have found that a second, distinct long-wavelength isomer is produced electrochemically. This different long-wavelength isomer arises from a difference in the regiochemistry of spirocyclic ring-opening. The structures of both long-wavelength isomers were ascertained by cyclic voltammetry and <superscript>1</superscript> H NMR analyses, in concert with computational modeling. These results are compared to those for the symmetric parent PSHD, which due to symmetry possesses only a single possible regioisomer upon either electrochemical or photochemical ring-opening. Density functional theory calculations of bond lengths, bond orders, and molecular orbitals allow the rationalization of this differential photochromic vs electrochromic behavior of the QSHDs.<br /> (Copyright © 2019, Webb et al.; licensee Beilstein-Institut.)

Details

Language :
English
ISSN :
1860-5397
Volume :
15
Database :
MEDLINE
Journal :
Beilstein journal of organic chemistry
Publication Type :
Academic Journal
Accession number :
31666882
Full Text :
https://doi.org/10.3762/bjoc.15.240