Supplementary information files for "Classification and quantitative characterisation of the excited states of π-conjugated diradicals"
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posted on 2025-03-03, 09:43 authored by Lujo Matasović, Hugo Bronstein, Richard H Friend, Felix PlasserFelix Plasser<p dir="ltr">Supplementary files for article "Classification and quantitative characterisation of the excited states of π-conjugated diradicals"</p><p dir="ltr">Diradicals are of high current interest as emerging materials for next generation optoelectronic applications. To tune their excited-state properties it would be greatly beneficial to have a detailed understanding of the wave functions of the different states involved but this endeavour is hampered by formal and practical barriers. To tackle these challenges, we present a formal analysis as well as concrete results on diradical excited states. We start with a detailed investigation of the available states of a two-orbital two-electron model viewed from both the valence-bond and molecular orbital perspectives. We highlight the presence of diradical and zwitterionic states and illustrate their connections to the states found in closed-shell molecules. Subsequently, we introduce practical protocols for analysing states from realistic multireference computations applying these to the<i> </i><i>para</i>-quinodimethane (pQDM) molecule. The analysis reveals four different categories of states – diradical, zwitterionic, HOMO–SOMO as well as biexciton – while also providing insight into their energetics and optical properties. Twisting the CH<sub>2</sub> groups allows us to interconvert between the closed- and open-shell forms of pQDM illustrating the connection between the states in both forms. More generally, we hope that this work will lay the foundations for a more powerful rational design approach to diradicals for photophysical applications.</p><p dir="ltr">© The Royal Society of Chemistry, CC BY 3.0</p>
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Support from the Harding Distinguished Postgraduate Programme and Winton Scholarship.
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