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  5. An Air-Stable Organic Radical from a Controllable Photoinduced Domino Reaction of a Hexa-aryl Substituted Anthracene

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Article
en
2021

An Air-Stable Organic Radical from a Controllable Photoinduced Domino Reaction of a Hexa-aryl Substituted Anthracene

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en
2021
Vol 86 (11)
Vol. 86
DOI: 10.1021/acs.joc.1c00233

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Ben Zhong Tang
Ben Zhong Tang

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Xiaoyu Mao
Jianyu Zhang
Xiaohui Wang
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Abstract

Air-stable organic radicals and radical ions have attracted great attention for their far-reaching application ranging from bioimaging to organic electronics. However, because of the highly reactive nature of organic radicals, the design and synthesis of air-stable organic radicals still remains a challenge. Herein, an air-stable organic radical from a controllable photoinduced domino reaction of a hexa-aryl substituted anthracene is described. The domino reaction involves a photoinduced [4 + 2] cycloaddition reaction, rearrangement, photolysis, and an elimination reaction; 1H/13C NMR spectroscopy, high resolution mass spectrometry, single-crystal X-ray diffraction, and EPR spectroscopy were exploited for characterization. Furthermore, a photoinduced domino reaction mechanism is proposed according to the experimental and theoretical studies. In addition, the effects of employing push and pull electronic groups on the controllable photoinduced domino reaction were investigated. This article not only offers a new blue emitter and novel air-stable organic radical compound for potential application in organic semiconductor applications, but also provides a perspective for understanding the fundamentals of the reaction mechanism on going from anthracene to semiquinone in such anthracene systems.

How to cite this publication

Xiaoyu Mao, Jianyu Zhang, Xiaohui Wang, Haoke Zhang, Peifa Wei, Herman H. Y. Sung, Ian D. Williams, Xing Feng, Xin‐Long Ni, Carl Redshaw, M.R.J. Elsegood, Jacky W. Y. Lam, Ben Zhong Tang (2021). An Air-Stable Organic Radical from a Controllable Photoinduced Domino Reaction of a Hexa-aryl Substituted Anthracene. , 86(11), DOI: https://doi.org/10.1021/acs.joc.1c00233.

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Publication Details

Type

Article

Year

2021

Authors

13

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acs.joc.1c00233

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