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

Author:

Petty Anthony J.1234,Ai Qianxiang1234,Sorli Jeni C.5674,Haneef Hamna F.894,Purdum Geoffrey E.5674,Boehm Alex1234,Granger Devin B.1234ORCID,Gu Kaichen5674,Rubinger Carla Patricia Lacerda10111213,Parkin Sean R.1234,Graham Kenneth R.1234ORCID,Jurchescu Oana D.894ORCID,Loo Yueh-Lin567414ORCID,Risko Chad123415ORCID,Anthony John E.123415ORCID

Affiliation:

1. Department of Chemistry

2. University of Kentucky

3. Lexington

4. USA

5. Department of Chemical and Biological Engineering

6. Princeton University

7. Princeton

8. Department of Physics and Center for Functional Materials

9. Wake Forest University

10. Physics and Chemistry Institute

11. Federal University of Itajubá

12. Itajubá

13. Brazil

14. Andlinger Center for Energy and the Environment

15. Center for Applied Energy Research

Abstract

Silylethyne-functionalized benzodithiophene serves as a universal crystal engineering core to yield stable, soluble, π-stacked arrays of aromatic chromophores.

Funder

National Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

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