H
Hongling Wang
Researcher at Guizhou University
Publications - 13
Citations - 325
Hongling Wang is an academic researcher from Guizhou University. The author has contributed to research in topics: Carbene & Enantioselective synthesis. The author has an hindex of 7, co-authored 10 publications receiving 165 citations. Previous affiliations of Hongling Wang include Nanyang Technological University.
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Journal ArticleDOI
N‐Heterocyclic Carbene Organocatalysis: Activation Modes and Typical Reactive Intermediates
Journal ArticleDOI
A reaction mode of carbene-catalysed aryl aldehyde activation and induced phenol OH functionalization.
Xingkuan Chen,Hongling Wang,Kazuki Doitomi,Kazuki Doitomi,Chong Yih Ooi,Pengcheng Zheng,Wangsheng Liu,Hao Guo,Song Yang,Baoan Song,Hajime Hirao,Hajime Hirao,Yonggui Robin Chi,Yonggui Robin Chi +13 more
TL;DR: A reaction mode of carbene catalysis is reported that allows for aromatic aldehyde activation and remote oxygen atom functionalization and is expected to significantly expand the power of carbenes catalysis in asymmetric chemical synthesis.
Journal ArticleDOI
Addition of N-Heterocyclic Carbene Catalyst to Aryl Esters Induces Remote C-Si Bond Activation and Benzylic Carbon Functionalization.
Hongling Wang,Xingkuan Chen,Yongjia Li,Jilan Wang,Shuquan Wu,Wei Xue,Song Yang,Yonggui Robin Chi,Yonggui Robin Chi +8 more
TL;DR: Through the incorporation of a silicon atom to an aryl carboxylic ester substrate, the resulting C-Si bond can be activated via the addition of a carbene catalyst on a remote site, which allows for efficient functionalization of the benzylic sp3-carbons of aryL carboxYlic esters.
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Carbene and Acid Cooperative Catalytic Reactions of Aldehydes and o-Hydroxybenzhydryl Amines for Highly Enantioselective Access to Dihydrocoumarins
Xingkuan Chen,Runjiang Song,Yingguo Liu,Chong Yih Ooi,Zhichao Jin,Zhichao Jin,Tingshun Zhu,Hongling Wang,Hongling Wang,Lin Hao,Yonggui Robin Chi,Yonggui Robin Chi +11 more
TL;DR: A highly enantioselective method for quick access to dihydrocoumarins is reported, which involves a cooperative catalytic process with carbene and in situ generated Brønsted acid as the catalysts.
Journal ArticleDOI
Chiral Nitroarenes as Enantioselective Single-Electron-Transfer Oxidants for Carbene-Catalyzed Radical Reactions
Hongling Wang,Hongling Wang,Yuhuang Wang,Xingkuan Chen,Chengli Mou,Shuyan Yu,Huifang Chai,Zhichao Jin,Yonggui Robin Chi,Yonggui Robin Chi +9 more
TL;DR: A new class of chiral oxidants that contain a nitro group for oxidation and a chiral sulfonamide moiety for stereoselectivity control is developed and is expected to find unique applications in other asymmetric oxidations and oxygen-atom-transferring reactions.