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Updated: Sep 23, 2026

Determination of the Photoisomerization Quantum Yield of a Hydrazone Photoswitch
Published on: February 7, 2022
Orchestrating photoswitch thermal backconversion using hydrogen bonds to reshape energy landscapes
Liang Fei1, Zacharias Liasi2, Jacob L Elholm1
1Department of Chemical Engineering, Universitat Politècnica de Catalunya, EEBE, Barcelona, Spain.
Abstract:
Thermodynamic control of molecular photoswitches remains a fundamental challenge, centered on the stabilization of high-energy metastable states. Inspired by concepts of selective kinetic regulation found in Maxwell's demon-like systems, we explore hydrogen bonding as a molecular-level selector for modulating the thermal back-conversion of quadricyclane (QC) to norbornadiene (NBD). By strategically incorporating hydrogen-bond donors and acceptors, we show that these interactions build a water "bridge" that restricts rotational degrees of freedom. This bridge significantly elevates the kinetic barrier and redirects the isomerization along an alternative reaction coordinate. In this manner, the hydrogen-bonding system selectively regulates the thermal back-conversion dynamics and enables directional control over the isomerization kinetics, achieving up to a 5000-fold extension of the thermal half-life. This work illustrates how hydrogen bonds can facilitate precise control over back-conversion dynamics and molecular thermal stability in molecular photoswitches.
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