维多利亚3308老品牌

维多利亚3308老品牌

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周能能

 

   

 

周能能 博士 副教授 硕士生导师

实验室维多利亚3308老品牌511

电子邮箱: zhounn@ahnu.edu.cn






主要学习工作经历

20089-20126 维多利亚3308老品牌 工学学士 导师:倪永红 教授

20129-20156 兰州大学 理学硕士 有机化学 导师:韩丙 教授

20159-20186 南京大学 理学博士 有机化学 导师:朱成建 教授

20187-至今 维多利亚3308老品牌

研究方向

自由基化学,绿色有机合成方法学,物理有机化学

 

期刊论文


23)Nengneng Zhou,* Lei Wang, Fangli Zhao, Xiang Gao, Xiaowei Zhao, and Man Zhang, NHC-Catalyzed Tandem Reaction: A Strategy for the Synthesis of 2-Pyrrolidinone-Functionalized Phenanthridines, J. Org. Chem. 2023, 88, 16556–16565.

22)Nengneng Zhou,* Fangli Zhao, Lei Wang, Xiang Gao, Xiaowei Zhao, and Man Zhang, NHC-Catalyzed Regioselective Intramolecular Radical Cyclization Reaction for the Synthesis of Benzazepine Derivatives, Org. Lett. 2023, 25, 6072–6076.

21)Nengneng Zhou,* Lei Wang, Fangli Zhao, Xiang Gao, Xiaowei Zhao, Man Zhang, NHC-Catalyzed Radical Tandem Cyclization/Coupling Reaction for the Synthesis of 2-Pyrrolidinone Derivatives, Asian. J. Org. Chem. 2023, 12, e202300334.

20)Xiaowei Zhao, Ziqin Xia, Man Zhang, Nengneng Zhou,* Radical-Mediated Tandem Cyclization to Construct Seven-Membered Nitrogen/Oxygen Heterocycles. Chin. J. Org. Chem. 2022, 42, 3995-4023. (Invited review in Chinese)

19)Nengneng Zhou, Qiankun Xu, Ziqin Xia, Fangli Zhao, Lei Wang, Man Zhang, Copper-Catalyzed Multicomponent Oxysulfonylation of Alkenes with Cyclobutanone Oxime Esters and Hydroxamic Acids via the Insertion of Sulfur Dioxide. Adv. Synth. Catal. 2022, 364, 4020–4025.

18)Nengneng Zhou,* Ziqin Xia, Kaimo Kuang, Qiankun Xu, Fangli Zhao, Lei Wang, and Man Zhang, Visible-Light-Induced Difluoroalkylation of 1‑(Allyloxy)-2-(1-arylvinyl)benzenes and 1‑(1-Arylvinyl)-2-(vinyloxy)benzenes: Synthesis of Bis-Difluoroalkylated Benzoxepines and 2H‑Chromenes. Org. Lett. 2022, 24, 5791−5796.

17) Man Zhang,* Sixin Wu Lei Wang, Ziqin Xia, Kaimo Kuang, Qiankun Xu, Fangli Zhao, and Nengneng Zhou*, Visible-Light-Induced Cascade Cyclization of N‑Propargyl Aromatic Amines and Acyl Oxime Esters: Rapid Access to 3‑Acylated Quinolines. J. Org. Chem. 2022, 87, 10277−10284.

16) Nengneng Zhou,* Qiankun Xu, Ziqin Xia, Kaimo Kuang, Sixin Wu, Wenping Li, and Man Zhang, Palladium-catalyzed radical cascade cyanoalkylsulfonylation/cyclization of 3-arylethynyl-[1,10-biphenyl]-2-carbonitriles with cyclobutanone oxime esters and DABSO. Chem. Commun., 2022, 58, 2335-2338.

15) Nengneng Zhou,* Ziqin Xia, Sixin Wu, Kaimo Kuang, Qiankun Xu, and Man Zhang, Visible-Light-Induced Multicomponent Cascade Cycloaddition of N-Propargyl Aromatic Amines, Cyclobutanone Oxime Esters, and K2S2O5: Access to Cyanoalkylsulfonylated Quinolines. J. Org. Chem. 2021, 86, 15253-15262.

14) Nengneng Zhou,* Sixin Wu, Kaimo Kuang, Ziqin Xia, Qiankun Xu and Man Zhang, A photoredox- or metal-catalyzed three-component cyanoalkylsulfonylation reaction of 1-(allyloxy)-2-(1-arylvinyl)benzenes, potassium metabisulfite, and cycloketone oxime esters: synthesis of cyanoalkylsulfonylated benzoxepines.Org. Chem. Front., 2021, 8, 6032-6037.

13) Nengneng Zhou,* Kaimo Kuang,# Meixia Wu,# Sixin Wu, Qiankun Xu, Ziqin Xia, and Man Zhang, tert-Butyl Hydroperoxide-Initiated Radical Cyclization of 1-(Allyloxy)-2-(1-Arylvinyl)Benzenes with Sulfinic Acids to Access Sulfonated Benzoxepines.Adv. Synth. Catal. 2021, 363, 3491– 3495.

12) Nengneng Zhou*, Kaimo Kuang,# Meixia Wu,# Sixin Wu, Ziqin Xia, Qiankun Xu, and Man Zhang, Visible-light-induced radical cascade cyclization of 1-(allyloxy)-2-(1-arylvinyl)benzenes with sulfonyl chlorides for the synthesis of sulfonated benzoxepines.Org. Chem. Front., 2021, 8, 4095-4100.

11) Nengneng Zhou*, Sixin Wu, Kaimo Kuang, Meixia Wu and Man Zhang, Ni-Catalyzed radical cyclization of vinyl azides with cyclobutanone oxime esters to access cyanoalkyl containing quinoxalin-2(1H)-ones. Org. Biomol. Chem., 2021, 19, 4697-4700.

10) Nengneng Zhou,* Meixia Wu, Kaimo Kuang, Sixin Wu and Man Zhang, Transition-metal-free Photo-induced Cascade Sulfonylation/Addition/Cyclization of 3-Arylethynyl-[1,1′-biphenyl]-2-carbonitriles with Aryldiazonium Tetrafluoroborates via the Insertion of Sulfur Dioxide.Advanced Synthesis & Catalysis, 2020, 362, 5391-5397.

9) Nengneng Zhou,* Meixia Wu,Man Zhang, Xiaoqiang Zhou and Wei Zhou, TBPB-initiated cascade cyclization of 3-arylethynyl-[1,1′-biphenyl]-2-carbonitriles with sulfinic acids: access to sulfone-containing cyclopenta[gh]phenanthridines.Org. Biomol. Chem., 2020, 18, 1733-1737.

8) Nengneng Zhou,* Meixia Wu, Man Zhang, and Xiaoqiang Zhou, Visible-Light-Induced Difluoroacetylation of O-(Allyloxy)Aryl-Aldehydes: Access to Difluoroacetylated Chroman-4-ones. Asian J. Org. Chem., 2019, 8, 828-831.
7) N. N. Zhou, X. A. Yuan, Y. Zhao, J. Xie* and C. J. Zhu* Synergistic Photoredox and Organocatalysis for Inverse Hydroboration of Imines, Angew. Chem. Int. Ed., 2018, 57, 3990

6) N. N. Zhou, J. Xie,* C. J. Zhu,* Harnessing sunlight without a photosensitizer for highly efficient consecutive [3+2]/[4+2] annulation to synthesize fused benzobicyclic skeletons, Chem. Commun., 2017, 53, 10707.

5) N. N. Zhou, J. Liu, Z. F. Yan, Z. K. Wu, H. L. Zhang, W. P. Li, C. J. Zhu,* Synthesis of cyclohexylidenehydrazines-fused polycyclics via photocatalytic radical cascade reaction of 2-ethynylaldehyde hydrazones, Chem. Commun., 2017, 53, 2036.

4) N. N. Zhou, P. Xu, W. P. Li, Y. X. Cheng, C. J. Zhu,* Visible light promoted carbodifluoroalkylation of homopropargylic alcohols via concomitant 1,4-aryl migration, Acta Chim. Sinica., 2017, 75, 60.

3) N. N. Zhou, Z. F Yan, H. L Zhang, Z. K Wu, C. J. Zhu,* Metal-free Radical Oxidative Cyclization of o-Azidoaryl Acetylenic Ketones with Sulfinic Acids to Access Sulfone-Containing 4-Quinolones, J. Org. Chem., 2016, 81, 12181.

2) F. Chen,+ N. N. Zhou,+ J. L. Zhan, B. Han*, W. Yu,* tert-Butyl nitrite-mediated vicinal sulfoximation of alkenes with sulfinic acids: a highly efficient approach toward α-sulfonyl ketoximes. Org. Chem. Front., 2017, 4, 135. ( contributed equally)

1) X. Y. Duan,+ N. N. Zhou,+ R. Fang+, X. L. Yang, W. Yu, B. Han,* Transition from π Radicals to σ Radicals: Substituent-Tuned Cyclization of Hydrazonyl Radicals, Angew. Chem. Int. Ed., 2014, 53, 3158. (contributed equally)



      





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