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Publikace:
Pyrazinacenes exhibit on-surface oxidation-state-dependent conformational and self-assembly behaviours

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Miklík, David
Mousavi, S. Fatemeh
Burešová, Zuzana
Middleton, Anna
Matsushita, Yoshitaka
Labuta, Jan
Ahsan, Aisha
Buimaga-Iarinca, Luiza
Karr, Paul A
Bureš, Filip

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Nature Publishing Group

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Acenes and azaacenes lie at the core of molecular materials' applications due to their important optical and electronic features. A critical aspect is provided by their heteroatom multiplicity, which can strongly affect their properties. Here we report pyrazinacenes containing the dihydro-decaazapentacene and dihydro-octaazatetracene chromophores and compare their properties/functions as a model case at an oxidizing metal substrate. We find a distinguished, oxidation-state-dependent conformational adaptation and self-assembly behaviour and discuss the analogies and differences of planar benzo-substituted decaazapentacene and octaazatetracene forms. Our broad experimental and theoretical study reveals that decaazapentacene is stable against oxidation but unstable against reduction, which is in contrast to pentacene, its C-H only analogue. Decaazapentacenes studied here combine a planar molecular backbone with conformationally flexible substituents. They provide a rich model case to understand the properties of a redox-switchable pi-electronic system in solution and at interfaces. Pyrazinacenes represent an unusual class of redox-active chromophores. Acenes are a promising class of organic materials with distinctive electronic and optical properties. Here decaazapentacene and octaazatetracenes are prepared and their self-assembly behaviour at different oxidation states is analysed.

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pyrazinacenes, self-assembly, redox-active chromophores, pyrazinaceny, samoorganizující se, redox-aktivní chromofory

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