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A convenient tandem one-pot synthesis of donor-acceptor-type triphenylene 2,3-dicarboxylic esters from diarylacetylene

Tian, X. L.; Feng, Chun; Tian, Xian-Li; Zhou, Jing; Xiang, Shi-Kai; Yu, Wen-Hao; Wang, Bi-Qin; Hu, Ping; Redshaw, Carl; Zhao, Ke-Qing

Authors

X. L. Tian

Chun Feng

Xian-Li Tian

Jing Zhou

Shi-Kai Xiang

Wen-Hao Yu

Bi-Qin Wang

Ping Hu

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Professor Carl Redshaw C.Redshaw@hull.ac.uk
Professor of Inorganic Materials Chemistry and REF Lead for Chemistry

Ke-Qing Zhao



Abstract

A tandem one-pot method for the direct synthesis of polysubstituted triphenylene 2,3-dicarboxylic esters with different substitution patterns was developed by enyne metathesis of diarylacetylene, followed by Diels–Alder, aromatization and a cyclization cascade.

Citation

Feng, C., Tian, X., Zhou, J., Xiang, S., Yu, W., Wang, B., …Zhao, K. (2014). A convenient tandem one-pot synthesis of donor-acceptor-type triphenylene 2,3-dicarboxylic esters from diarylacetylene. Organic & biomolecular chemistry, 12(36), 6977-6981. doi:10.1039/c4ob01503g

Journal Article Type Article
Acceptance Date Jul 29, 2014
Online Publication Date Jul 29, 2014
Publication Date Sep 28, 2014
Deposit Date Jul 7, 2015
Publicly Available Date Jul 7, 2015
Journal Organic & biomolecular chemistry
Print ISSN 1477-0520
Electronic ISSN 1477-0539
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 12
Issue 36
Pages 6977-6981
DOI https://doi.org/10.1039/c4ob01503g
Keywords Polysubstituted triphenylene 2,3-dicarboxylic esters
Public URL https://hull-repository.worktribe.com/output/376061
Publisher URL http://pubs.rsc.org/en/Content/ArticleLanding/2014/OB/c4ob01503g#!divAbstract
Additional Information : This document is CrossCheck deposited; : Supplementary Information; : The Royal Society of Chemistry has an exclusive publication licence for this journal; OPEN ACCESS: The accepted version of this article will be made freely available after a 12 month embargo period; : Received 17 July 2014; Accepted 29 July 2014; Accepted Manuscript published 29 July 2014; Advance Article published 8 August 2014; Version of Record published 20 August 2014

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