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Unilaterally Fluorinated Acenes: Synthesis and Solid-State Properties.


ABSTRACT: The rapid development of organic electronics is closely related to the availability of molecular materials with specific electronic properties. Here, we introduce a novel synthetic route enabling a unilateral functionalization of acenes along their long side, which is demonstrated by the synthesis of 1,2,10,11,12,14-hexafluoropentacene (1) and the related 1,2,9,10,11-pentafluorotetracene (2). Quantum chemical DFT calculations in combination with optical and X-ray absorption spectroscopy data indicate that the single-molecule properties of 1 are a connecting link between the organic semiconductor model systems pentacene (PEN) and perfluoropentacene (PFP). In contrast, the crystal structure analysis reveals a different packing motif than for the parent molecules. This can be related to distinct F???H interactions identified in the corresponding Hirshfeld surface analysis and also affects solid-state properties such as the exciton binding energy and the sublimation enthalpy.

SUBMITTER: Hofmann PE 

PROVIDER: S-EPMC7540388 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Unilaterally Fluorinated Acenes: Synthesis and Solid-State Properties.

Hofmann Philipp E PE   Tripp Matthias W MW   Bischof Daniel D   Grell Yvonne Y   Schiller Anna L C ALC   Breuer Tobias T   Ivlev Sergei I SI   Witte Gregor G   Koert Ulrich U  

Angewandte Chemie (International ed. in English) 20200715 38


The rapid development of organic electronics is closely related to the availability of molecular materials with specific electronic properties. Here, we introduce a novel synthetic route enabling a unilateral functionalization of acenes along their long side, which is demonstrated by the synthesis of 1,2,10,11,12,14-hexafluoropentacene (1) and the related 1,2,9,10,11-pentafluorotetracene (2). Quantum chemical DFT calculations in combination with optical and X-ray absorption spectroscopy data ind  ...[more]

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