Unsymmetrical benzothiazole-based dithienylethene photoswitches
Herein, we investigate the structure-property relationships in a new series of benzothiazole based unsymmetrical hexafluorocyclopentene dithienylethenes (DTEs) and compare the results with the known facts for symmetric diarylethenes (DAEs). We reveal high photocyclization efficiency resulting from a...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2022-10, Vol.24 (38), p.23758-23768 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Herein, we investigate the structure-property relationships in a new series of benzothiazole based unsymmetrical hexafluorocyclopentene dithienylethenes (DTEs) and compare the results with the known facts for symmetric diarylethenes (DAEs). We reveal high photocyclization efficiency resulting from a significant shift of ground state equilibrium to the antiparallel conformation and a barrierless excited state pathway to conical intersection, which remains unperturbed even in polar solvents for most of the prepared DTEs. Furthermore, we uncover that the rate of back thermal cycloreversion correlates clearly more with the central C-C bond-length in the transition state than with the central C-C bond-length in the ground state of the cyclic form. Finally, our detailed vibrational spectral analysis of studied DTEs points out significant changes in Raman and infrared spectra during photoswitching cycles which pave the way for a non-destructive readout of stored information.
Unsymmetrical benzothiazole based dithienylethenes represent P-type photoswitches with high thermal stability, efficient photocyclization, good resistance to photodegradation and non-destructive readout possibility of coded information using vibrational spectroscopy. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/d2cp02325c |