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Name: | Lishuang Ma | |||||
Academic Title: | Tenure-Track Associate Professor | |||||
Advisor Type: | Master Supervisor | |||||
Department: | Department of Chemistry | |||||
Research Interests: | Theoretical and Computational Chemistry | |||||
E-Mail: | hxmals@upc.edu.cn | |||||
Telephone: | +86-18661768981 | |||||
◎Educational Background | ||||||
2014 – 2019, Ph. D. in Physical Chemistry, Key Laboratory of Theoretical and Computational Photochemistry of Ministry of Education, College of Chemistry, Beijing Normal University 2010 – 2014, B. S. in Chemistry, College of Chemistry and Chemical Engineering, Liaoning Normal University | ||||||
◎Work Experience | ||||||
2022 – present, Tenure-Track Associate Professor, College of Chemistry and Chemical Engineering, China University of Petroleum (East China) 2019 – 2022, Postdoctoral Teaching Fellow, Department of Chemistry, China University of Petroleum (East China) | ||||||
◎Research Direction | ||||||
[1] Computational photochemistry and photophysics [2] Theoretical and computational studies of the ground- and excited-state reactions | ||||||
◎Research Project | ||||||
[1]National Natural Science Foundation of China: “Theoretical Study on the Mechanism of the Visible-Light-Driven Radical Coupling and Photoredox Catalyzed Reactions Based on the Electron Donor-Acceptor Complex.”Period: 2021 – 2023. [2] Fundamental Research Funds for the Central Universities:“Theoretical Studies on the Mechanism of the Visible-Light-Induced Radical Coupling Reactions via Electron Donor- Acceptor Complex Formation.” Period: 2019 – 2021. [3] Qingdao Postdoctoral Researcher Applied Research Project: “Excited-State Calculations of the Electron Donor-Acceptor Complexes and Their Applications in Photochemical Synthesis.” Period: 2019 – 2021. | ||||||
◎Representative Papers | ||||||
[1] L. Ma*, W. Feng, Y. Xi, X. Chen*, X. Lin*, Mechanistic Insights into Visible- Light-Driven Dearomative Fluoroalkylation Mediated by an Electron Donor–Acceptor Complex. J. Org. Chem.2022, 87, 944−951. [2] L. Ma*, W. Feng, H. Shang, X. Lin*, Y. Xi, Tunable photochemical 6p heterocyclization reactions mediated by a boron Lewis acid. New J. Chem.2021, 45, 18924–18932. [3] L. Ma, W. Fang, L. Shen*, X. Chen*, Regulatory Mechanism and Kinetic Assessment of Energy Transfer Catalysis Mediated by Visible Light. ACS Catal.2019, 9, 3672–3684. [4] L. Ma, Q. Zhao, X. Zhang, X. Chen*, A Tunable Photo-release Mechanism of Phototrigger Compound Varying the pH Value and Excitation Wavelength. Chem. Phys. Lett.2019, 730, 253–258. [5] R. Zhou*, L. Ma*, X. Yang, J. Cao, Org. Chem. Front.2021, 8, 426–444. [6] S. Zhao#, L. Ma#, Y. Xi, H. Shang*, X. Lin*, Mechanistic Insights into the C–H Activation of Methane Mediated by the Unsupported and Silica-Supported VO2OH and CrOOH: a DFT Study. RSC Adv.2021, 11, 11295–11303. (co-first author) [7] X. Lin*#, L. Ma#, S. Zhao, Y. Xi, H. Shang, G. An, C. Lu, Silica-Supported Nb(III)–CH3 Species Can Act as an Efficient Catalyst for the Non-Oxidative Coupling of Methane. New J. Chem.2021, 45, 12260–12270. (co-first author) [8] F. Huang#, L. Ma#, Y. Che, H. Jiang*, X. Chen*; Y. Wang*, Corannulene-Based Coordination Cage with Helical Bias. J. Org. Chem. 2018, 83, 733–739. (co-first author) [9] H. Xiao#, L. Ma#, W. Fang, X. Chen*, A pOH Jump Driven by N═N Out-of-Plane Motion in the Photoisomerization of Water-Solvated Triazabutadiene. J. Phys. Chem. A2017, 26, 4939–4947. (co-first author) [10] H. Liu, L. Ma, R. Zhou, X. Chen,* W. Fang, J. Wu*, One-Pot Photomediated Giese Reaction/Friedel−Crafts Hydroxyalkylation/Oxidative Aromatization To Access Naphthalene Derivatives from Toluenes and Enones. ACS Catal.2018, 8, 6224−6229. [11] C. Yu, L. Ma, J. He, J. Xiang, X. Deng, Y. Wang*, X. Chen*, H. Jiang*, Flexible, Linear Chains Act as Baffles to Inhibit the Intramolecular Rotation of Molecular Turnstiles. J. Am. Chem. Soc. 2016, 138, 15849–15852. [12] G. Wang, L. Ma, J. Xiang, Y. Wang*, X. Chen*, Y. Che*, H. Jiang*. 2,6-Pyridodi- carboxamide-Bridged Triptycene Molecular Transmission Devices: Converting Rotation to Rocking Vibration. J. Org. Chem.2015, 80, 11302−11312. [13] W. Sun, Y. Wang, L. Ma, L. Zheng, W. Fang, X. Chen, H. Jiang*. Self-Assembled Carcerand-like Cage with a Thermoregulated Selective Binding Preference for Purification of High-Purity C60 and C70. J. Org. Chem. 2018, 83, 14667−14675. [14] H. Zhang*, P. Tian, L. Ma, Y. Zhou, C. Jiang, X. Lin, X. Xiao, Remote Directed Isocyanation of Unactivated C(sp3)–H Bonds: Forging Seven-Membered Cyclic Ureas Enabled by Copper Catalysis. Org. Lett. 2020, 22, 997–1002. [15] J. Cao,# X. Yang,# L. Ma, K. Lu, R. Zhou*, Metal-free hydrogen evolution cross-coupling enabled by synergistic photoredox and polarity reversal catalysis, Green Chem., 2021, 23, 8988–8994. | ||||||
◎Representative Works | ||||||
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◎Awards and Honors | ||||||
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◎Courses Offered | ||||||
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◎Student Training | ||||||
1.Supervise Postgraduate Students: Two co-supervised postgraduate students. 2.Admissions Instructions: Graduate and Undergraduate students with backgrounds in chemistry and chemical engineering are welcome to join in our research group. If you are interested in computational chemistry, please feel free to contact me via email. | ||||||
◎Part-time Academic Job | ||||||
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