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Computationally aided design of a high-performance organic semiconductor: the development of a universal crystal engineering core.

Author
Abstract
:

Herein, we describe the design and synthesis of a suite of molecules based on a benzodithiophene "universal crystal engineering core". After computationally screening derivatives, a trialkylsilylethyne-based crystal engineering strategy was employed to tailor the crystal packing for use as the active material in an organic field-effect transistor. Electronic structure calculations were undertaken to reveal derivatives that exhibit exceptional potential for high-efficiency hole transport. The promising theoretical properties are reflected in the preliminary device results, with the computationally optimized material showing simple solution processing, enhanced stability, and a maximum hole mobility of 1.6 cm V s.

Year of Publication
:
2019
Journal
:
Chemical science
Volume
:
10
Issue
:
45
Number of Pages
:
10543-10549
Date Published
:
2019
ISSN Number
:
2041-6520
URL
:
https://doi.org/10.1039/c9sc02930c
DOI
:
10.1039/c9sc02930c
Short Title
:
Chem Sci
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