We present a class of visible-light-driven molecular motors based on barbituric acid. Due to a serendipitous reactivity we observed during their synthesis, these motors possess a tertiary stereogenic centre on the upper half, characterised by a hydroxy group. Using a combination of femto- and nanosecond transient absorption spectroscopy, molecular dynamics simulations and low-temperature H-1 NMR experiments we found that these motors operate similarly to push-pull second-generation overcrowded alkene-based molecular motors. Interestingly, the hydroxy group at the stereocentre enables a hydrogen bond with the carbonyl groups of the barbituric acid lower half, which drives a sub-picosecond excited-state isomerisation, as observed spectroscopically. Computational simulations predict an excited state "lasso" mechanism where the intramolecular hydrogen bond pulls the molecule towards the formation of the metastable state, with a high predicted quantum yield of isomerisation (68%) in gas phase.

A visible-light-driven molecular motor based on barbituric acid

Di Donato Mariangela;
2023

Abstract

We present a class of visible-light-driven molecular motors based on barbituric acid. Due to a serendipitous reactivity we observed during their synthesis, these motors possess a tertiary stereogenic centre on the upper half, characterised by a hydroxy group. Using a combination of femto- and nanosecond transient absorption spectroscopy, molecular dynamics simulations and low-temperature H-1 NMR experiments we found that these motors operate similarly to push-pull second-generation overcrowded alkene-based molecular motors. Interestingly, the hydroxy group at the stereocentre enables a hydrogen bond with the carbonyl groups of the barbituric acid lower half, which drives a sub-picosecond excited-state isomerisation, as observed spectroscopically. Computational simulations predict an excited state "lasso" mechanism where the intramolecular hydrogen bond pulls the molecule towards the formation of the metastable state, with a high predicted quantum yield of isomerisation (68%) in gas phase.
2023
Istituto di Chimica dei Composti OrganoMetallici - ICCOM -
Inglese
14
32
8458
8465
8
https://pubs.rsc.org/en/content/articlelanding/2023/SC/D3SC03090C
Esperti anonimi
Barbituric acid; Excited-states; Femtosecond transient absorption; Hydroxy groups; Isomerisation; Molecular motors; Nanosecond transient absorption; Stereogenic centers; Transient absorption spectroscopies; Visible-light-driven
9
info:eu-repo/semantics/article
262
Kuntze, Kim; Pooler Daisy, R S; DI DONATO, Mariangela; Hilbers Michiel, F; van der Meulen, Pieter; Buma Wybren, Jan; Priimagi, Arri; Feringa Ben, L; C...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/464397
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