Catalytic amination of aryl bromides with in situ generated dimethylamines from N, N- dimethylacetamide (DMA) has been successfully carried out using Ni(Phen)Cl2 as catalyst. Both electron-rich and electron-poor aroma...Catalytic amination of aryl bromides with in situ generated dimethylamines from N, N- dimethylacetamide (DMA) has been successfully carried out using Ni(Phen)Cl2 as catalyst. Both electron-rich and electron-poor aromatic system reacted smoothly under the conditions to give N,N-dimethylarylamines in good yields.展开更多
We report a facile and high-yielding procedure for preparing biphenyltetracarboxylic dianhydrides (BPDAs). This method relies on a nickel-catalyzed electroreductive coupling reaction of dimethyl 3-chorophthalate (3-DM...We report a facile and high-yielding procedure for preparing biphenyltetracarboxylic dianhydrides (BPDAs). This method relies on a nickel-catalyzed electroreductive coupling reaction of dimethyl 3-chorophthalate (3-DMCP) and/or dimethyl 4-chorophthalate (4-DMCP) with subsequent hydrolysis of tetra-ester and dehydration of tetra-acid.展开更多
A novel approach to the synthesis of 2,2',3,3'-biphenyltetracarboxylic dianhydride is described. The target compound was prepared by a nickel-catalyzed couplirtg reaction of dimethy 3-chlorophthalate (3-DMCP) for ...A novel approach to the synthesis of 2,2',3,3'-biphenyltetracarboxylic dianhydride is described. The target compound was prepared by a nickel-catalyzed couplirtg reaction of dimethy 3-chlorophthalate (3-DMCP) for 4 h at 70-80 ℃, followed by subsequent hydrolysis of tetra-ester in acid solution and dehydration of tetra-acid, with overall yield of 68%. The structures of the products were characterized by IR, 1H NMR and ^13C NMR respectively.展开更多
This work describes stereoselective preparation ofβ-C-aryl/vinyl glucosides via mild Ni-catalyzed reductive arylation and vinylation of C1-glucosyl halides with aryl and vinyl halides.A broad range of aryl halides an...This work describes stereoselective preparation ofβ-C-aryl/vinyl glucosides via mild Ni-catalyzed reductive arylation and vinylation of C1-glucosyl halides with aryl and vinyl halides.A broad range of aryl halides and vinyl halides were employed to yield C-aryl/vinyl glucosides in 42%–93%yields.Good to excellentβ-selectivities were obtained for C-glucosides by using tridentate ligand.展开更多
文摘Catalytic amination of aryl bromides with in situ generated dimethylamines from N, N- dimethylacetamide (DMA) has been successfully carried out using Ni(Phen)Cl2 as catalyst. Both electron-rich and electron-poor aromatic system reacted smoothly under the conditions to give N,N-dimethylarylamines in good yields.
文摘We report a facile and high-yielding procedure for preparing biphenyltetracarboxylic dianhydrides (BPDAs). This method relies on a nickel-catalyzed electroreductive coupling reaction of dimethyl 3-chorophthalate (3-DMCP) and/or dimethyl 4-chorophthalate (4-DMCP) with subsequent hydrolysis of tetra-ester and dehydration of tetra-acid.
基金the National Undergraduates' Innovative Experiment Project of Chinathe Undergraduates' Innovative Experiment Project of Sichuan University for financial support.
文摘A novel approach to the synthesis of 2,2',3,3'-biphenyltetracarboxylic dianhydride is described. The target compound was prepared by a nickel-catalyzed couplirtg reaction of dimethy 3-chlorophthalate (3-DMCP) for 4 h at 70-80 ℃, followed by subsequent hydrolysis of tetra-ester in acid solution and dehydration of tetra-acid, with overall yield of 68%. The structures of the products were characterized by IR, 1H NMR and ^13C NMR respectively.
基金supported by the National Natural Science Foundation of China(21871173,21572140,21372151)
文摘This work describes stereoselective preparation ofβ-C-aryl/vinyl glucosides via mild Ni-catalyzed reductive arylation and vinylation of C1-glucosyl halides with aryl and vinyl halides.A broad range of aryl halides and vinyl halides were employed to yield C-aryl/vinyl glucosides in 42%–93%yields.Good to excellentβ-selectivities were obtained for C-glucosides by using tridentate ligand.