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Wen-Juan Hao

Researcher at Jiangsu Normal University

Publications -  211
Citations -  5020

Wen-Juan Hao is an academic researcher from Jiangsu Normal University. The author has contributed to research in topics: Catalysis & Annulation. The author has an hindex of 36, co-authored 211 publications receiving 3962 citations. Previous affiliations of Wen-Juan Hao include Nanjing Tech University & Soochow University (Suzhou).

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Catalytic Dual 1,1-H-Abstraction/Insertion for Domino Spirocyclizations

TL;DR: A catalytic domino spirocyclization of 1,7-enynes with simple cycloalkanes and cyclo-1,3-dicarbonyls has been established via multiple C-C bond formations from alkynyl/alkenyl functions and dual α,α-C(sp(3))-H abstraction/insertion.
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Merging [2+2] Cycloaddition with Radical 1,4-Addition: Metal-Free Access to Functionalized Cyclobuta[a]naphthalen-4-ols.

TL;DR: A metal-free cycloaddition and 1,4-addition sequence induced by S-centered radicals has been achieved by treating benzene-linked allene-ynes with aryldiazonium tetrafluoroborates and DABCO-bis(sulfur dioxide) in a one-pot procedure, providing a greener and more practical access to functionalized cyclobuta[a]naphthalen-4-ols with valuable applications.
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Recent advances in radical transformations of internal alkynes

TL;DR: This review highlights the recent progress in this rapidly growing area by presenting a series of catalytic oxidative reactions, mechanisms and applications which have appeared in the most recent literature.
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Recent developments in 1,6-addition reactions of para-quinone methides (p-QMs)

TL;DR: A comprehensive overview of recent progress in this rapidly growing field by summarizing the 1,6-conjugate addition and annulation reactions of p-QMs with consideration of their mechanisms and applications is provided in this article.
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Catalytic arylsulfonyl radical-triggered 1,5-enyne-bicyclizations and hydrosulfonylation of α,β-conjugates

TL;DR: Catalytic bicyclization of 1,5-enynes anchored by α,β-conjugates with arylsulfonyl radicals was established using TBAI and Cu(OAc)2 as co-catalysts.