Associate Professor
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Curriculum Vitae Chinese Version  (中文版)

Personal   Information

Name:

Cuiju Zhu

Date of Birth:

18.01.1990

Place of Birth:

Jianli, Hubei (P. R. China.)

Gender:  

Female  

Nationality:  

 

Chinese

Academic   Education

2015.102019.12

PhD   Candidate in Organic Chemistry

Institut für   Organische und Biomolekulare Chemie,

Georg-August-Universität   Göttingen

Supervisor:   Prof. Dr. Lutz Ackermann

 

2012.092015.07

M. Sc. in Organic Chemistry

Fujian   Institute of Research on the Structure of Matter, Chinese Academy of Sciences

Supervisor:   Prof. Dr. Weiping Su

 

2008.092012.07

B.Sc. in Chemistry

Department of Chemistry

Sichuan Normal University

Professional   Experience

2021.04present

Associate Professor

Central China   Normal University

2019.122021.02

Post-doctoral Fellow

Institut für Organische   und Biomolekulare Chemie,

Georg-August-Universität   Göttingen

Supervisor: Prof. Dr. Lutz Ackermann

 

Honors   and Awards  

2014                National Scholarship, Chinese Academy of Science

2013                Merit Student Honor, Chinese Academy of Science

 

Publications      

1.      Cuiju Zhu,' N. W. J. Ang,' T. H. Meyer, Y. Qiu, Lutz Ackermann*, Organic Electrochemistry: Molecular Syntheses with Potential, ACS Cent. Sci. 2021,7, 415-431.

2.      Cuiju Zhu, Rositha Kuniyil, and Lutz Ackermann*, Manganese(I)-Catalyzed C–H Activation/Diels-Alder/retro-Diels-Alder Domino Alkyne Annulation by Transformable Pyridines, Angew. Chem. Int. Ed. 2019, 58, 5388-5342. (highlighted in Synfacts 2019, 15 (06): 0621)

3.      Cuiju Zhu, R. Kuniyil, B. B. Jei and Lutz Ackermann*, Domino C–H Activation/Directing Group Migration/Alkyne Annulation: Unique Selectivity by d6-Cobalt(III) Catalysts, ACS Catal. 2020, 10, 4444-4450.

4.      Cuiju Zhu, J. C. A. Oliveira, Z. Shen, H. Huang, L. Ackermann*, Manganese(II/III/I)-Catalyzed C–H Arylations in Continuous Flow, ACS Catal. 2018, 8, 4402-4407.

5.      Youai Qiu,' Cuiju Zhu,' Lutz Ackermann*, Rhodaelectro-Catalyzed C–H and C–C Activation, CCS Chem. 2020. 2, 1529-1552. (Both authors contributed equally)

6.      Cuiju Zhu, M. Stangier, J. C. A. Oliveira, L. Massignan and Lutz Ackermann*, Iron-Electro-Catalyzed C–H Arylations: Mechanistic Insights In to Oxidation-Induced Reductive Elimination through Spectroscopy, CV, and Computation for Ferraelectrocatalysis, Chem. Eur. J. 2019, 25, 16382-16389. (highlighted in Synfacts 03032020, 16(03), 0293

7.      R. Mei,' Cuiju Zhu,' L. Ackermann*, Ruthenium(II)-Catalyzed C-H Functionalizations on Benzoic Acids with Aryl, Alkenyl and Alkynyl Halides by Weak-O-Coordination, Chem. Commun. 2016, 52, 13171-13174. (Both authors contributed equally)

8.      Y. Yang,' Cuiju Zhu,' M. Zhang, S. Huang, J. Lin, X. Pan, W. Su*, Condensation of anthranilic acids with pyridines to furnish pyridoquinazolones via pyridine dearomatization, Chem. Commun. 2016, 52, 12869-12872. (Both authors contributed equally)

9.      Cuiju Zhu, Y. Zhang, H. Zhao, S. Huang, M. Zhang*, W. Su*, Sodium Iodide-Catalyzed Direct α-Alkoxylation of Ketones with Alcohols via Oxidation of α-Iodo Ketone Intermediates, Adv. Synth. Catal. 2015, 357, 331-338.

10.  Z. Shen, H. Huang, Cuiju Zhu, S. Warratz, L. Ackermann*, MnCl2-Catalyzed C–H Alkylation on Azine Heterocycles, Org. Lett. 2019, 21, 571-574.

11.  F. Fumagalli, S. Warratz, S.-K. Zhang, T. Rogge, Cuiju Zhu, A. C. Stückl, L. Ackermann*, Arene-Ligand-free Ruthenium(II/III) Manifold for meta-C–H Alkylation: Remote Purine Diversification, Chem. Eur. J. 2018, 24, 3984-3988.

12.  Z. Ruan,' S.-K. Zhang,' Cuiju Zhu, P. N. Ruth, D. Stalke, L. Ackermann*, Ruthenium(II)-Catalyzed meta C-H Mono- and Difluoromethylations by Phosphine/Carboxylate Cooperation, Angew. Chem. Int. Ed. 2017, 56, 2045-2049.

13.  S. Warratz, D. J. Burns, Cuiju Zhu, K. Korvorapun, T. Rogge, J. Scholz, C. Jooss, D. Gelman, L. Ackermann*, meta-C-H Bromination on Purine Bases by Heterogeneous Ruthenium Catalysis, Angew. Chem. Int. Ed. 2017, 56, 1557-1560.

 

Research   Interests

Sustainable organometallic chemistry

Electrochemical asymmetric synthesis