Issue 5, 2021

Rational design and syntheses of aniline-based diradical dications: isolable congeners of quinodimethane diradicals

Abstract

Two-electron oxidation of five aniline-based compounds 4,4′′-p/m-terphenyldiamines afforded a class of terphenyldiamine dications 12+52+. Their electronic structures were systematically investigated by theoretical calculations and various experiments, including single-crystal X-ray diffraction, UV/Vis absorption spectroscopy, EPR spectroscopy and SQUID measurements. p-Terphenyldiamine dications 12+32+ are open-shell singlets in the ground state with large singlet–triplet energy gaps. The inherent instability of dication 42+ precludes the determination of its ground state, whereas the observed linear Curie plot for m-terphenyldiamine dication 52+ indicates that its ground state is triplet. The calculated singlet–triplet energy gap (ΔEOS–T) value is 1.27 kcal mol−1 for 42+ and 1.10 kcal mol−1 for 52+. This work provides the first examples of isolable aniline-based diradical dications.

Graphical abstract: Rational design and syntheses of aniline-based diradical dications: isolable congeners of quinodimethane diradicals

Supplementary files

Article information

Article type
Research Article
Submitted
12 Oct 2020
Accepted
27 Nov 2020
First published
10 Dec 2020

Org. Chem. Front., 2021,8, 891-900

Rational design and syntheses of aniline-based diradical dications: isolable congeners of quinodimethane diradicals

Y. Fang, Q. Sun, X. Chen, Y. Qiu, C. Chen, L. Wang, Y. Zhao, Y. Su, T. Li, L. Zhang and X. Wang, Org. Chem. Front., 2021, 8, 891 DOI: 10.1039/D0QO01265C

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