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Dive into the research topics where Hong-Gang Cheng is active.

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Featured researches published by Hong-Gang Cheng.


Angewandte Chemie | 2018

Epoxides as Alkylating Reagents for the Catellani Reaction

Hong-Gang Cheng; Chenggui Wu; Han Chen; Ruiming Chen; Guangyin Qian; Zhi Geng; Qiang Wei; Yuanyuan Xia; Jingyang Zhang; Yuming Zhang; Qianghui Zhou

We report a cooperative catalytic system comprising a PdII complex, XPhos, and the potassium salt of 5-norbornene-2-carboxylic acid that enables the use of epoxides as alkylating reagents in the Catellani reaction, thereby expanding the existing paradigm of this powerful transformation. The potassium salt of inexpensive 5-norbornene-2-carboxylic acid acts as both mediator and base in the process. This mild, chemoselective, scalable, and atom-economical protocol is compatible with a wide variety of readily available functionalized aryl iodides and epoxides, as well as terminating olefins. The resulting products undergo facile oxa-Michael addition to furnish ubiquitous isochroman scaffolds.


Angewandte Chemie | 2018

The Discovery of a Palladium(II)‐Initiated Borono‐Catellani Reaction

Shuqing Chen; Ze-Shui Liu; Tao Yang; Yu Hua; Zhiyu Zhou; Hong-Gang Cheng; Qianghui Zhou

Reported is a novel palladium(II)-initiated Catellani-type reaction that utilizes widely accessible aryl boronic acids as the substrates instead of aryl halides, thereby greatly expanding the existing scope of this powerful transformation. This borono-Catellani reaction was promoted by cooperative catalysis between Pd(OAc)2 and the inexpensive 5-norbornene-2-carbonitrile. Practicality is the striking feature of the reaction: it is run open to air at ambient temperature and no phosphine ligand is needed. This mild, chemoselective, and scalable protocol is compatible with a large range of readily available functionalized aryl boronic acids and bromides, as well as terminating olefins (50 examples, 39-97u2009% yields). Moreover, the orthogonal reactivity between the borono-Catellani and classical Catellani reaction was demonstrated. This work is expected to open new avenues for developing novel Catellani-type reactions.


Organic chemistry frontiers | 2018

Convergent syntheses of 2,3-dihydrobenzofurans via a Catellani strategy

Chenggui Wu; Hong-Gang Cheng; Ruiming Chen; Han Chen; Ze-Shui Liu; Jingyang Zhang; Yuming Zhang; Yuxin Zhu; Zhi Geng; Qianghui Zhou

A cooperative catalytic system comprising a Pd/XPhos complex and a potassium salt of 5-norbornene-2-carboxylic acid to promote the annulation between aryl iodides and epoxides was developed, thereby providing highly convergent access to valuable 2,3-dihydrobenzofuran (DHBF) scaffolds. The unique potassium salt of the inexpensive 5-norbornene-2-carboxylic acid serves as a highly efficient catalytic mediator (10 mol%), which leads to fewer side reactions. The salient features of the reaction include its broad substrate scope (with respect to both aryl iodides and epoxides), its high atom economy and good chemo-selectivity. Furthermore, no extra base is needed for the process.


Angewandte Chemie | 2018

Modular One‐Step Three‐Component Synthesis of Tetrahydroisoquinolines Using a Catellani Strategy

Guangyin Qian; Miao Bai; Shijun Gao; Han Chen; Siwei Zhou; Hong-Gang Cheng; Wei Yan; Qianghui Zhou

Reported is a modular one-step three-component synthesis of tetrahydroisoquinolines using a Catellani strategy. This process exploits aziridines as the alkylating reagents, through palladium/norbornene cooperative catalysis, to enable a Catellani/Heck/aza-Michael addition cascade. This mild, chemoselective, and scalable protocol has broad substrate scope (43 examples, up to 90u2009% yield). The most striking feature of this protocol is the excellent regioselectivity and diastereoselectivity observed for 2-alkyl- and 2-aryl-substituted aziridines to access 1,3-cis-substituted and 1,4-cis-substituted tetrahydroisoquinolines, respectively. Moreover, this is a versatile process with high step and atom economy.


Chemistry: A European Journal | 2018

Alkylating Reagents Employed in Catellani-Type Reactions

Ze-Shui Liu; Qianwen Gao; Hong-Gang Cheng; Qianghui Zhou

The Catellani reaction is a powerful strategy that allows the expeditious synthesis of highly substituted arenes, which are not easily accessible through traditional transition-metal-catalyzed cross-coupling reactions. This reaction utilizes the synergistic interplay of palladium and norbornene catalysis to facilitate sequential ortho-C-H functionalization and ipso termination of aryl iodides in a single operation. Since pioneering work by the group of Catellani in 1997, and later by the group of Lautens, this chemistry has attracted considerable attention from the synthetic chemistry community. Dramatic progress has been made by a number of groups in the past two decades. In this Minireview, the alkylating reagents employed in this intriguing reaction and the corresponding applications in organic synthesis are summarized; thus complementing existing reviews to inspire future developments.


ACS Catalysis | 2018

Palladium/Norbornene Cooperative Catalysis To Access Tetrahydronaphthalenes and Indanes with a Quaternary Center

Ze-Shui Liu; Guangyin Qian; Qianwen Gao; Peng Wang; Hong-Gang Cheng; Qiang Wei; Qi Liu; Qianghui Zhou


Chemistry: A European Journal | 2018

Frontispiece: Alkylating Reagents Employed in Catellani-Type Reactions

Ze-Shui Liu; Qianwen Gao; Hong-Gang Cheng; Qianghui Zhou


Chemistry: A European Journal | 2018

Cover Feature: Alkylating Reagents Employed in Catellani-Type Reactions (Chem. Eur. J. 58/2018)

Ze-Shui Liu; Qianwen Gao; Hong-Gang Cheng; Qianghui Zhou


Asian Journal of Organic Chemistry | 2018

The Liebeskind-Srogl Cross-Coupling Reaction and its Synthetic Applications

Hong-Gang Cheng; Han Chen; Yue Liu; Qianghui Zhou


Angewandte Chemie | 2018

Cover Picture: Epoxides as Alkylating Reagents for the Catellani Reaction (Angew. Chem. Int. Ed. 13/2018)

Hong-Gang Cheng; Chenggui Wu; Han Chen; Ruiming Chen; Guangyin Qian; Zhi Geng; Qiang Wei; Yuanyuan Xia; Jingyang Zhang; Yuming Zhang; Qianghui Zhou

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