[1] | Hagmann W K. The Many Roles for Fluorine in Medicinal Chemistry[J]. J Med Chem, 2008,51(15):4359-4369. | [2] | YUAN Li, LI Zengzeng, JIANG Shengming, et al. Visible-Light-Induced Dearomatizing Spirocyclization of Alkenes Toward Perfluorinated Azaspirocyclic Cyclohexadienones[J]. Chinese J Appl Chem, 2018,35(2):181-188(in Chinese). 袁莉,李增增,蒋圣明,等. 可见光诱导烯烃去芳香化成环合成含氟氮杂螺环已二烯酮[J].应用化学, 2018,35(2):181-188. | [3] | Zhang M, Xie P, Zhao W, et al. Cascade Couplings of N-Alkyl-N-methacryloyl Benzamides with Ethers and Benzenesulfonohydrazides to Generate Isoquinoline-1,3(2H,4H)-dione Derivatives[J]. J Org Chem, 2015,80(8):4176-4183. | [4] | Vidal X, Jos L, Gul as M, et al. Palladium-Catalyzed, Enantioselective Formal Cycloaddition Between Benzyltriflamides and Allenes:Straightforward Access to Enantioenriched Isoquinolines[J]. J Am Chem Soc, 2019,141(5):1862-1866. | [5] | Zhu C L, Wang C, Xu H, et al. Iron(II)-Catalyzed Azidotrifluoromethylation of Olefins and N-Heterocycles for Expedient Vicinal Trifluoromethyl Amine Synthesis[J]. ACS Catal, 2018,8(6):5032-5037. | [6] | Zhou M Q, Zhang J, Zhang X G, et al. Ni-Catalyzed Defluorination for the Synthesis of gem-Difluoro-1,3-dienes and Their [4+2] Cycloaddition Reaction[J]. Org Lett, 2019,21(3):671-674. | [7] | Munoz S B, Krishnamurti V, Prakash G K S, et al. Direct Difluorination Hydroxylation, Trifluorination, and C(sp2) H Fluorination of Enamides[J]. Org Lett, 2018, 20(4): 1042 1045. | [8] | YUAN Li, LI Zengzeng, JIANG Shengming, et al. Visible-Light-Induced ortho-Perfluoroalkylation of para-Substituted Phenols and Anilines[J]. Chem J Chinese Univ, 2018,39(2):241-246(in Chinese). 袁莉,李增增,蒋圣明,等. 可见光诱导对位苯酚/苯胺邻位多氟烷基化[J]. 高等学校化学学报, 2018,39(2):241-246. | [9] | Han G F, Liu Y X, Wang Q M, et al. Copper-Catalyzed Intramolecular Trifluoromethylation of N-Benzylacrylamides Coupled with Dearomatization: Access to CF3-Containing 2-Azaspiro[4. 5]decanes[J]. Org Lett, 2014,16(12):3188-3191. | [10] | Xu T, Cheung C W, Xu X L. Iron-Catalyzed 1,2-Addition of Perfluoroalkyl Iodides to Alkynes and Alkenes[J]. Angew Chem Int Ed, 2014,53(19):4910-4914. | [11] | Xiong Y, Zhang G Z. Enantioselective 1,2-Difunctionalization of 1,3-Butadiene by Sequential Alkylation and Carbonyl Allylation[J]. J Am Chem Soc, 2018,140(8):2735-2738. | [12] | Ouyang X H, Song R J, Li J H. Developments in the Chemistry of α-Carbonyl Alkyl Bromides[J]. Chem Asian J, 2018,13(17):2316-2332. | [13] | Wang Y Q, He Y T, Liang Y M, et al. Palladium-Catalyzed Radical Cascade Iododifluoromethylation/Cyclization of 1,6-Enynes with Ethyl Difluoroiodoacetate[J]. Org Lett, 2015,17(17): 4280-4283. | [14] | Xia X F, Yu J P, Wang D W. Copper/Iron-Cocatalyzed Cascade Perfluoroalkylation/Cyclization of 1,6-Enynes with Iodoperfluoroalkanes[J]. Adv Synth Catal, 2018,360(12): 562-567. | [15] | Wang S W, Yu J, Zhou Q Y, et al. Visible-Light-Induced Atom Transfer Radical Addition and Cyclization of Perfluoroalkyl Halides with 1,n-Enynes[J]. ACS Sustainable Chem Eng, 2019,7(11):10154-10162. | [16] | Liu Y, Zhang J L, Li J H, et al. Cascade Nitration/Cyclization of 1,7-Enynes with tBuONO and H2O:One-Pot Self-assembly of Pyrrolo[4,3,2-de]quinolinones[J]. Angew Chem Int Ed, 2014,53(34): 9017-9020. | [17] | Vlad B, Sébastien C, MacMillan D W C, et al. Metallaphotoredox Difluoromethylation of Aryl Bromides[J]. Angew Chem Int Ed, 2018,57(38):12543-1254. | [18] | Yu J, Sheng H, Wang S W, et al. Copper-atalyzed Radical Cascades of para-Quinone Methides with AIBN and H2O via α-Cyanoalkylation by C—C Bond Cleavage:New Access to Benzofuran-2(3h)-Ones[J]. Chem Commun, 2019,55(17):4578-4581. |
|