The Design and Fabrication of Supramolecular Semiconductor Nanowires Formed by Benzothienobenzothiophene (BTBT)-Conjugated Peptides

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Date

2018

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Volume Title

Publisher

Royal Soc Chemistry

Open Access Color

BRONZE

Green Open Access

Yes

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58

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110

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Abstract

pi-Conjugated small molecules based on a [1]benzothieno[3,2-b]benzothiophene (BTBT) unit are of great research interest in the development of solution-processable semiconducting materials owing to their excellent charge-transport characteristics. However, the BTBT -core has yet to be demonstrated in the form of electro-active one-dimensional (1D) nanowires that are self-assembled in aqueous media for potential use in bioelectronics and tissue engineering. Here we report the design, synthesis, and self-assembly of benzothienobenzothiophene (BTBT)-peptide conjugates, the BTBT-peptide (BTBT-C-3-COHN-Ahx-VVAGKK-Am) and the C-8-BTBT-peptide (C-8-BTBT-C-3-COHN-Ahx-VVAGKK-Am), as -sheet forming amphiphilic molecules, which self-assemble into highly uniform nanofibers in water with diameters of 11-13(+/- 1) nm and micron-size lengths. Spectroscopic characterization studies demonstrate the J-type - interactions among the BTBT molecules within the hydrophobic core of the self-assembled nanofibers yielding an electrical conductivity as high as 6.0 x 10(-6) S cm(-1). The BTBT -core is demonstrated, for the first time, in the formation of self-assembled peptide 1D nanostructures in aqueous media for potential use in tissue engineering, bioelectronics and (opto)electronics. The conductivity achieved here is one of the highest reported to date in a non-doped state.

Description

Usta, Hakan/0000-0002-0618-1979; Guler, Mustafa O./0000-0003-1168-202X; Hamley, Ian/0000-0002-4549-0926; Edwards-Gayle, Charlotte/0000-0001-7757-107X

Keywords

Semiconductors, Nanowires, Thiophenes, Peptides, Hydrophobic and Hydrophilic Interactions

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Fields of Science

02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

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WoS Q

Q1

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Q1
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OpenCitations Citation Count
22

Source

Nanoscale

Volume

10

Issue

21

Start Page

9987

End Page

9995
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CrossRef : 19

Scopus : 24

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22

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7

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