Structure‐Property Relationships for Potential Inversion From Electron Acceptors Based on Thiophene‐Fused Triptycene Quinones, 1,4‐Diketones and Their Malononitrile Adducts

Author:

Warrington Stefan12ORCID,Montanaro Stephanie2ORCID,Elsegood Mark R. J.2ORCID,Nichol Gary S.1ORCID,Wright Iain A.1ORCID

Affiliation:

1. School of Chemistry University of Edinburgh Joseph Black Building David Brewster Road Edinburgh EH16 5PL United Kingdom

2. Department of Chemistry Loughborough University Epinal Way Loughborough Leicestershire LE11 3TU United Kingdom

Abstract

AbstractThe synthesis and properties of a series of 11,11,12,12‐tetracyano‐9,10‐anthraquinodimethane (TCAQ) inspired electron acceptors based on thiophene‐fused quinone and triptycene motifs is presented. This has yielded insights into structure‐property relationships for establishing and modulating simultaneous two‐electron reduction processes in TCAQ analogues. These new compounds were synthesised using a Friedel‐Crafts acylation between triptycene and thiophene‐3,4‐dicarbonyl chloride. Isomeric para‐quinones featuring a [c]‐fused thiophene on one side and a β,β‐ or α,β‐fused triptycene on the other were isolated alongside a thiophene‐3,4‐diketone which bears two triptycene fragments. Knoevenagel condensation of these products with malononitrile produced a quinoidal bis(dicyanomethylene), an oxo‐dicyanomethylene and an acyclic bis(dicyanomethylene). This series of new electron accepting molecules has been studied using X‐ray crystallography and the implications of their 3D structures on NMR and UV/vis absorbance spectroscopy and cyclic voltammetry results have been ascertained with conclusions underpinned by computational methods.

Funder

Engineering and Physical Sciences Research Council

Loughborough University

Diamond Light Source

Publisher

Wiley

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