1-Substituted 1,2,3-triazoles represents‘privileged’structural scaffolds of many clinical pharmaceuticals.However,the traditional methods for their preparation mainly rely on thermal[3+2]cycloaddition of potentially...1-Substituted 1,2,3-triazoles represents‘privileged’structural scaffolds of many clinical pharmaceuticals.However,the traditional methods for their preparation mainly rely on thermal[3+2]cycloaddition of potentially dangerous acetylene and azides.Here we report a base-mediated[4+1]annulation of azoalkenes generated in situ from readily available difluoroacetaldehyde N-tosylhydrazones(DFHZ-Ts)with amines under relatively mild conditions.This azide-and acetylene-free strategy provides facile access to diverse 1-substituted 1,2,3-triazole derivatives in high yield in a regiospecific manner.This transformation has great functional group tolerance and can suit a broad substrate scope.Furthermore,the application of this novel methodology in the gram-scale synthesis of an antibiotic drug PH-027 and in the late-stage derivatization of several bioactive small molecules and clinical drugs demonstrated its generality,practicability and applicability.展开更多
in this work, the phosphine-catalyzed annulation reactions between modified allylic derivatives and polar 1,1-dicyano-1,3-dienes have been studied. In the catalysis of PPh3 (20 mol%), a [4 + 1 ] annulation reaction...in this work, the phosphine-catalyzed annulation reactions between modified allylic derivatives and polar 1,1-dicyano-1,3-dienes have been studied. In the catalysis of PPh3 (20 mol%), a [4 + 1 ] annulation reaction is realized between a series of l,l-dicyano-2,4-diaryl-1,3-dienes and ethoxycarbonyl-activated allylic acetate, producing polysubstituted cyclopentenes in modest to excellent yields. It is also observed that the substituents of both 1,3-dienes and allylic derivatives have a significant influence on the annulation mode: under the catalysis of PPh3 or PBu3 (20 mol%), regioselective [3 + 2] annulation products are formed from differently substituted substratcs.展开更多
基金supported by the National Natural Science Foundation of China(NSFC,Nos.21871043,21961130376)Department of Science and Technology of Jilin Province(Nos.20180101185JC,20190701012GH,20200801065GH)the Fundamental Research Funds for the Central Universities(Nos.2412019ZD001,2412020ZD003)。
文摘1-Substituted 1,2,3-triazoles represents‘privileged’structural scaffolds of many clinical pharmaceuticals.However,the traditional methods for their preparation mainly rely on thermal[3+2]cycloaddition of potentially dangerous acetylene and azides.Here we report a base-mediated[4+1]annulation of azoalkenes generated in situ from readily available difluoroacetaldehyde N-tosylhydrazones(DFHZ-Ts)with amines under relatively mild conditions.This azide-and acetylene-free strategy provides facile access to diverse 1-substituted 1,2,3-triazole derivatives in high yield in a regiospecific manner.This transformation has great functional group tolerance and can suit a broad substrate scope.Furthermore,the application of this novel methodology in the gram-scale synthesis of an antibiotic drug PH-027 and in the late-stage derivatization of several bioactive small molecules and clinical drugs demonstrated its generality,practicability and applicability.
基金Acknowledgement Financial support from National Natural Science Foundation of China (Nos. 21072100 21121002 21272119) is gratefully acknowledged.
文摘in this work, the phosphine-catalyzed annulation reactions between modified allylic derivatives and polar 1,1-dicyano-1,3-dienes have been studied. In the catalysis of PPh3 (20 mol%), a [4 + 1 ] annulation reaction is realized between a series of l,l-dicyano-2,4-diaryl-1,3-dienes and ethoxycarbonyl-activated allylic acetate, producing polysubstituted cyclopentenes in modest to excellent yields. It is also observed that the substituents of both 1,3-dienes and allylic derivatives have a significant influence on the annulation mode: under the catalysis of PPh3 or PBu3 (20 mol%), regioselective [3 + 2] annulation products are formed from differently substituted substratcs.