Deuterium Isotope Effect in Single Molecule Photophysics and Photochemistry of Hypericin

Author:

Wang Liangxuan12ORCID,Liu Quan1,Buchwald Andrea1,Wackenhut Frank134ORCID,Brecht Marc134ORCID,Gierschner Johannes12ORCID,Meixner Alfred J.1ORCID

Affiliation:

1. Institute of Physical and Theoretical Chemistry Eberhard Karls Universität Tübingen Auf der Morgenstelle 18 Tübingen 72076 Germany

2. Madrid Institute for Advanced Studies IMDEA Nanoscience Ciudad Universitaria de Cantoblanco, C/Faraday 9 Madrid 28049 Spain

3. Center for Process Analysis and Technology (PA&T) School of Life Sciences

4. Reutlingen Research Institute (RRI) Reutlingen University Alteburgstraße 150 Reutlingen 72762 Germany

Abstract

AbstractThe peripherical protons of the dye molecule hypericin can undergo structural interconversion (tautomerization) between different isomers separated by a low energy barrier with rates that depends sensitively on the interaction with local chemical environment defined by the nature of host material. We investigate the deuterium (D) isotope effect of hypericin tautomerism at the single‐molecule level to avoid ensemble averaging in different polymer matrices by a combined spectroscopic and computational approach. In the ′innocent′ PMMA matrix only intramolecular isotope effects on the internal conversion channel and tautomerization are observed; while PVA specifically interacts with the probe via H‐ and D‐bonding. This establishes a single molecular picture on intra‐ and intermolecular nano‐environment effects to control chromophore photophysics and ‐chemistry.

Publisher

Wiley

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