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How molecular architecture defines quantum yields

Chemistry

How molecular architecture defines quantum yields

F. Pashley-johnson, R. Munaweera, et al.

This exciting research conducted by Fred Pashley-Johnson, Rangika Munaweera, Sheikh I. Hossain, Steven C. Gauci, Laura Delafresnaye, Hendrik Frisch, Megan L. O’Mara, Filip E. Du Prez, and Christopher Barner-Kowollik reveals a 'goldilocks zone' of molecular architecture that dramatically enhances intramolecular cyclisation quantum yield. Discover how the positioning of functional groups can transform two-photon microprinting technology!... show more
Abstract
Understanding the relationship between molecular architecture and function underpins many challenges in chemical innovation. Bond-forming reactions are strongly influenced by topology in both small molecules and macromolecular frameworks. Here, we elucidate how molecular architecture impacts photo-induced cyclisations in a series of monodisperse macromolecules bearing defined spacers between photodimerisable pyrene–chalcone moieties, examining the relationship between intramolecular cyclisation propensity and intermolecular network formation. We identify a goldilocks zone of maximum reactivity between sterically hindered and entropically limited regimes, with a quantum yield of intramolecular cyclisation nearly an order of magnitude higher than the lowest value. The trifunctional macromolecular design allows deconvolution of quantum yields into formation of two distinct cyclic isomers, rationalised via molecular dynamics simulations. We visualize solution-based findings in light-based additive manufacturing by formulating four photoresists for two-photon microprinting, revealing that precise positioning of functional groups is critical: lower intramolecular quantum yields generally lead to higher-quality printing.
Publisher
Nature Communications
Published On
Jul 17, 2024
Authors
Fred Pashley-Johnson, Rangika Munaweera, Sheikh I. Hossain, Steven C. Gauci, Laura Delafresnaye, Hendrik Frisch, Megan L. O’Mara, Filip E. Du Prez, Christopher Barner-Kowollik
Tags
molecular architecture
photo-induced cyclisation
intramolecular cyclisation
quantum yield
molecular dynamics
two-photon microprinting
functional groups
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