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Theoretical and experimental investigation on the intersystem crossing kinetics in benzothioxanthene imide luminophores, and their dependence on substituent effects†
Laura Abad Galán,José M. Andrés Castán,Clément Dalinot,Pablo Simón Marqués,Philippe Blanchard,Olivier Maury,Clément Cabanetos,Tangui Le Bahers,Cyrille Monnereau
Physical Chemistry Chemical Physics Pub Date : 04/09/2020 00:00:00 , DOI:10.1039/D0CP01072C
Abstract

In spite of their remarkable luminescence properties, benzothioxanthene imide (BTXI, an imide containing rylene chromophores) derivatives have been largely overlooked compared to their perylene bisimide and naphthalene bisimide counterparts. Thus, their detailed photophysics are much less understood. In this paper, we show how relatively simple structural modifications of the backbone of BTXIs can lead to impressive variations in their inter-system crossing kinetics. Thus, through rational engineering of their structure, it is possible to obtain a triplet formation quantum yield that reaches unity, making BTXI a promising class of compounds for triplet-based applications (photodynamic therapy, electroluminescence, etc.).

Graphical abstract: Theoretical and experimental investigation on the intersystem crossing kinetics in benzothioxanthene imide luminophores, and their dependence on substituent effects
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