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Visible Light Photoredox Catalysis with CO_(2):Difunctionalization of Terminal Alkynes
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作者 Jianji Li Xuming Jiang +5 位作者 Qian Chen Fei Nie Shaomin Ji Yang Gao Xianwei Li Yanping Huo 《Chinese Journal of Chemistry》 2025年第21期2771-2778,共8页
The development of carbon dioxide(CO_(2))capture and utilization is of vital importance.However,previous photocatalytic reduction reactions for converting CO_(2)into chemicals(e.g.,CO,HCOOH,CH_(4),or CH_(3)OH)rely hea... The development of carbon dioxide(CO_(2))capture and utilization is of vital importance.However,previous photocatalytic reduction reactions for converting CO_(2)into chemicals(e.g.,CO,HCOOH,CH_(4),or CH_(3)OH)rely heavily on sacrificial reagents.Herein,we disclose a visible light photoredox-catalyzed 1,2-difunctionalization of terminal alkynes by using CO_(2)as an ideal quenching reagent and the xanthene dye Rhodamine 6G(Rh-6G)as a photocatalyst(PC)via consecutive photoinduced electron transfer(ConPET)process.The newly developed CO_(2)-triggered reaction provides a highly regio-and stereo-selective approach to diverse functionalized(E)-α-vinylsulfones with simultaneously efficient conversion of CO into oxalate.The practicality of this protocol is demonstrated by late-stage modification of alkynes derived from biologically active natural products or drugs.Preliminary mechanistic studies suggest that the homocoupling of CO_(2) radical anion results in the formation of oxalate. 展开更多
关键词 Photoredox catalysis CO_(2)conversion ConPET ALKYNES Difunctionalization RADICALS
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Synthesis of 1-Chalcogen-3-Alkyl Bicyclo[1.1.1]pentanes Enabled by a Photocatalytic Multicomponent Radical Coupling
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作者 Ruiyuan Xu Binye Cao +4 位作者 Yibo Wang Jingyi Zhang Yuping Huang Yihan Gao Wanmei Li 《Chinese Journal of Chemistry》 2025年第23期3259-3265,共7页
Current methods to access aryl/alkyl thiol-substituted bicyclo[1.1.1]pentane(BCP)derivatives(valuable bioisosteres for thiophenols/thioethers)remain underdeveloped.Herein,we report a photocatalytic multicomponent reac... Current methods to access aryl/alkyl thiol-substituted bicyclo[1.1.1]pentane(BCP)derivatives(valuable bioisosteres for thiophenols/thioethers)remain underdeveloped.Herein,we report a photocatalytic multicomponent reaction via consecutive photoinduced electron transfer(ConPET)to enable simultaneous Csp3-C and Csp3-Y(Y=S,Se,Te)bond formation on[1.1.1]pentanes.This strategy delivers diverse alkyl halides(Cl,Br,I;primary,secondary,tertiary).Late-stage derivatization of drug molecules(e.g.,aspirin,methylprednisolone)and oxidations to sulfoxides/sulfones demonstrate synthetic versatility.Mechanistic studies support a radical relay pathway initiated by ConPET-mediated alkyl radical generation.The method establishes a robust platform for constructing chalcogen-rich BCP bioisosteres,addressing a critical gap in medicinal chemistry and offering significant potential for drug discovery. 展开更多
关键词 Bicyclo[1.1.1]pentane(BCP) Csp^(3)-C and Csp^(3)-Y(Y=S/Se/Te)bond formation BIOISOSTERES Photocatalytic multicomponent reaction ConPET strategy CHEMOSELECTIVITY Difunctionalization Photocatalysis
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Photocatalytic Reductive Azaarenylation of Cyclopropanes via Consecutive Photo-induced Electron Transfer:A Facile Route toα-Quaternary Azaarenes
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作者 Gaolei Sun Wenhui Wei +2 位作者 Xiaowei Zhao Baokun Qiao Zhiyong Jiang 《Chinese Journal of Chemistry》 CSCD 2024年第23期3035-3040,共6页
α-Azaarene quaternary carbon centers are prevalent in drug molecules,making the development of efficient synthetic approaches of great interest.Herein,we describe an unprecedented method for constructingα-all-carbon... α-Azaarene quaternary carbon centers are prevalent in drug molecules,making the development of efficient synthetic approaches of great interest.Herein,we describe an unprecedented method for constructingα-all-carbon quaternary carbon-centered azaarenes by employing photocatalytic reductive coupling of various 2,2-disubstituted cycloproarylketones with readily available cyanoazaarenes.The reaction proceeds with high efficiency,displaying excellent compatibility with various functional groups and demonstrating high chemo-and regioselectivity.Mechanistic investigations suggest that consecutive photo-induced electron transfer(ConPET)plays a crucial role in the formation of photocatalyst with greater reducing capability,ultimately enabling the direct reductive conversion of unreactiveπ-bonds under mild and transition-metal-free conditions. 展开更多
关键词 Photoredox catalysis Reductive azaarenylation ConPET CROSS-COUPLING Radical reactions N-HETEROCYCLES
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