Unconventional Modulation of Diarylethene Photoswitches
Licentiatavhandling, 2022

Light can be manipulated and modulated to fit a particular need or application, such as overcoming a spectral mismatch when facilitating a high energy photochemical reaction. This can be of use in various applications, including solar energy conversion and biological contexts. Photochromic molecules, or molecular photoswitches, undergo photoisomerization reactions when subjected to light of different wavelengths, which can be tracked in situ by spectroscopic techniques such as UV-vis absorption and fluorescence. In this thesis, the photoisomerization and fluorescence of diarylethene photoswitches are modulated by three unconventional methods. The methods are unconventional in the sense that the photochemical processes are not induced by direct excitation. Instead, the photochemistry in the three included papers is respectively facilitated by rapid modulation of light that is not absorbed by the fluorescent isomer, triplet sensitization using hybrids of nanocrystals and organic mediators, or triplet-triplet annihilation photon upconversion. While further improvements are needed for these methods to reach their full potential, the findings in this thesis brings us closer to visible-light control of high energy photochemical transformations.

photochemistry

diarylethene

photochromic molecules

nanocrystals

triplet sensitization

triplet-triplet annihilation

molecular photoswitches

photon upconversion

10:an
Opponent: Rasmus Ringström, PhD-student, Department of chemistry and chemical engineering, Chalmers University of Technology, Sweden and Deise Fernanda Barbosa de Mattos, Department of chemistry and chemical engineering, Chalmers University of Technology, Sweden

Författare

Wera Larsson

Chalmers, Kemi och kemiteknik, Kemi och biokemi

Rapid amplitude-modulation of a diarylethene photoswitch: en route to contrast-enhanced fluorescence imaging

Chemical Science,;Vol. 12(2021)p. 7073-7078

Artikel i vetenskaplig tidskrift

A general approach for all-visible-light switching of diarylethenes through triplet sensitization using semiconducting nanocrystals

Journal of Materials Chemistry C,;Vol. 10(2022)p. 15833-15842

Artikel i vetenskaplig tidskrift

Diarylethene Isomerization by Using Triplet–Triplet Annihilation Photon Upconversion

Chemistry - A European Journal,;Vol. 29(2023)

Artikel i vetenskaplig tidskrift

Drivkrafter

Hållbar utveckling

Styrkeområden

Nanovetenskap och nanoteknik

Ämneskategorier

Fysikalisk kemi

Atom- och molekylfysik och optik

Kemi

Utgivare

Chalmers

10:an

Opponent: Rasmus Ringström, PhD-student, Department of chemistry and chemical engineering, Chalmers University of Technology, Sweden and Deise Fernanda Barbosa de Mattos, Department of chemistry and chemical engineering, Chalmers University of Technology, Sweden

Mer information

Senast uppdaterat

2024-07-01