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Thionation of naphthalene diimide molecules: Thin-film microstructure and transistor performance

journal contribution
posted on 2024-11-01, 10:56 authored by Adam Welford, Subashani ManiamSubashani Maniam, Eliot Gann, Lars Thomsen, Steven Langford, Christopher McNeill
The replacement of the imide oxygen atoms with sulfur atoms in the naphthalene diimide (NDI) framework is an attractive strategy for tuning of the electronic properties of such molecules. Here we report the synthesis and characterization of the full series of six thionated NDI molecules with branched side chains. In order to provide a direct comparison with the unthionated parent molecule, a top-gate, bottom contact geometry is adopted, with work function-modified gold electrodes facilitating electron injection. The highest electron mobility was observed for the S2-cis molecule, with a mobility of 0.20 cm(2)/Vs compared to 0.068 cm(2)/Vs for the parent molecule. Mobilities slightly lower than that achieved for the S2-cis molecule were also achieved for the S2-trans and S3 derivatives, with the S1, S4 and S2-cis imide derivatives showing mobilities lower than the parent molecule. The thin film microstructure of these molecules has also been explored using a combination of grazing-incidence wide-angle X-ray scattering and near-edge X-ray absorption fine-structure spectroscopy. The performance and microstructure of thin films deposited either by spin-coating or blade coating are also compared.

Funding

New generation functional materials for 21st century applications: exploiting the properties of naphthalene diimides

Australian Research Council

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Bespoke rylene diimides for fundamental and applied photophysics

Australian Research Council

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History

Journal

Organic Electronics: physics, materials, applications

Volume

53

Start page

287

End page

295

Total pages

9

Publisher

Elsevier

Place published

Netherlands

Language

English

Copyright

© 2017 Elsevier B.V. All rights reserved.

Former Identifier

2006092916

Esploro creation date

2020-06-22

Fedora creation date

2019-08-06

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