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Updated: May 13, 2026

Using Cyclic Voltammetry, UV-Vis-NIR, and EPR Spectroelectrochemistry to Analyze Organic Compounds
Published on: October 18, 2018
Do inverse dithienylethenes behave as normal ones? A joint spectroscopic and theoretical investigation
Stéphane Aloïse1, Michel Sliwa, Guy Buntinx
1Laboratoire de Spectrochimie Infrarouge et Raman (UMR 8516 du CNRS), Université des Sciences et Technologies de Lille, Villeneuve d'Ascq Cedex, France. stephane.aloise@univ-lille1.fr
Abstract:
We investigate an inverse (I) dithienylethene, the bis(3,5-dimethyl-2-thienyl) perfluorocyclopentene, using absorption, emission and NMR spectroscopies as well as state-of-art first-principles (TDDFT) calculations. First, we find in addition to the expected antiparallel and parallel conformers, a new stable antiparallel conformer , but its energy is too high to be significantly populated at working temperature. More importantly, we demonstrate that, instead of an equal proportion of an AP and a P conformer as in normal (N) diarylethenes, the AP conformer is present in large excess. This result is confirmed by both DFT thermodynamical analysis and temperature-dependent NMR experiments modelized with an ↔ fast interconversion model. With the latter, the relative populations are estimated to be ca. 3/1 for /. Furthermore, the 0-0 energies simulated with a model that accounts for both vibrational and state-specific media effects of the ground and the excited states indicate that and have very similar absorption signatures while only the conformer should give rise to emission. Eventually, within excited state manifold, important topological points along the ring-closure reaction coordinate, and more specifically the unprecedented S1(opt) of the closed isomer, have been identified.
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