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Molecular Ordering of Dithieno[2,3-d;2',3'-d]benzo[2,1-b:3,4-b']dithiophenes for Field-Effect Transistors.


ABSTRACT: Four derivatives of dithieno[2,3-d;2',3'-d']benzo[1,2-b;3,4-b']dithiophene (DTmBDT) have been synthesized to investigate the correlation between molecular structure, thin-film organization, and charge-carrier transport. Phenyl or thiophene end-capped derivatives at alpha positions of the outer thiophenes of DTmBDT present vastly different optoelectronic properties in comparison with bay-position alkyl-chain-substituted DTmBDT, which was additionally confirmed by density functional theory simulations. The film morphology of the derivatives strongly depends on alkyl substituents, aromatic end-caps, and substrate temperature. Field-effect transistors based on DTmBDT derivatives with bay-substituted alkyl chains show the best performance within this studied series with a hole mobility up to 0.75 cm2/V s. Attachment of aromatic end-caps disturbs the ordering, limiting the charge-carrier transport. Higher substrate temperature during deposition of the DTmBDT derivatives with aromatic end-caps results in larger domains and improved the transistor mobilities but not beyond the alkylated DTmBDT.

SUBMITTER: Keerthi A 

PROVIDER: S-EPMC6644372 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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Molecular Ordering of Dithieno[2,3-<i>d</i>;2',3'-<i>d</i>]benzo[2,1-<i>b</i>:3,4-<i>b</i>']dithiophenes for Field-Effect Transistors.

Keerthi Ashok A   Waliszewski Witold W   An Cunbin C   Jaber Abdullah A   Xia Debin D   Müllen Klaus K   Pisula Wojciech W   Marszalek Tomasz T   Baumgarten Martin M  

ACS omega 20180618 6


Four derivatives of dithieno[2,3-<i>d</i>;2',3'-<i>d</i>']benzo[1,2-<i>b</i>;3,4-<i>b</i>']dithiophene (<b>DT<i>m</i>BDT</b>) have been synthesized to investigate the correlation between molecular structure, thin-film organization, and charge-carrier transport. Phenyl or thiophene end-capped derivatives at alpha positions of the outer thiophenes of <b>DT<i>m</i>BDT</b> present vastly different optoelectronic properties in comparison with bay-position alkyl-chain-substituted <b>DT<i>m</i>BDT</b>,  ...[more]

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