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Controlled ultrafast ππ*-πσ* dynamics in tryptophan-based peptides with tailored micro-environment

Chemistry

Controlled ultrafast ππ*-πσ* dynamics in tryptophan-based peptides with tailored micro-environment

M. Hervé, A. Boyer, et al.

This research by Marius Hervé, Alexie Boyer, Richard Brédy, Isabelle Compagnon, Abdul-Rahman Allouche, and Franck Lépine reveals how we can control ultrafast molecular processes by modifying the micro-environment of tryptophan species. Through electrospray and mass spectrometry, the team uncovers fascinating dynamics of ππ*-πσ* transitions influenced by different adduct atoms.... show more
Abstract
Ultrafast charge, energy and structural dynamics in molecules are driven by the topology of the multidimensional potential energy surfaces that determines the coordinated electronic and nuclear motion. These processes are also strongly influenced by the interaction with the molecular environment, making very challenging a general understanding of these dynamics on a microscopic level. Here we use electrospray and mass spectrometry technologies to produce isolated molecular ions with a controlled micro-environment. We measure ultrafast photo-induced ππ*-πσ* dynamics in tryptophan species in the presence of a single, charged adduct. A striking increase of the timescale by more than one order of magnitude is observed when changing the added adduct atom. A model is proposed to rationalize the results, based on the localized and delocalized effects of the adduct on the electronic structure of the molecule. These results offer perspectives to control ultrafast molecular processes by designing the micro-environment on the Angström length scale.
Publisher
Communications Chemistry
Published On
Aug 31, 2021
Authors
Marius Hervé, Alexie Boyer, Richard Brédy, Isabelle Compagnon, Abdul-Rahman Allouche, Franck Lépine
Tags
ultrafast dynamics
tryptophan
photo-induced transitions
mass spectrometry
micro-environment
electrospray
electronic structure
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