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李昌志
2023-05-16 14:10
  • 李昌志
  • 李昌志 - 研究员 博导--李昌志-个人资料

近期热点

资料介绍

个人简历


李昌志,男,研究员,博士生导师。2002年和2005年于湖南师范大学化学化工学院获得学士和硕士学位,2009年于中科院大连化学物理研究所获得博士学位。毕业后留所工作至今,2014年晋升为副研究员,2019年晋升为研究员。辽宁省木质纤维生物质精炼协同创新中心首席科学家,大连市领军人才,中科院研究员。主要从事生物质催化转化研究工作,研究领域包括:离子液体介导的生物质转化、木质素选择解聚、高值化学品定向合成等。在Chemical Reviews, Nature Communications, Angewandte Chemie, Energy & Environmental Science等期刊发表一作/通讯作者论文60余篇,他引5700余次,授权专利25件。先后获“闵恩泽能源化工奖-青年进步奖”、“辽宁省自然科学二等奖”、“大连市科技发明奖一等奖”。主持国家重点研发计划项目等共10项。

研究领域


"""""主要从事生物质催化转化研究工作,研究领域包括:离子液体介导的生物质转化、木质素选择解聚、高值化学品定向合成等。"

近期论文


Zhang, B., Guo, T., Li, Z., Kühn, F. E., Lei, M., Zhao, Z., Xiao, J., Zhang, J., Xu, D., Zhang, T., Li, C. Z.* Transition-metal-free synthesis of pyrimidines from lignin β-O-4 segments via a one-pot multi-component reaction. Nature Communications, 2022, 13, 3365.\r
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Jia, Z. C.; Ji, N.*; Diao, X. Y.; Li, X. X.; Zhao, Y. J.; Lu, X. B.; Liu, Q. L.; Liu, C. X.; Chen, G. Y.; Ma, L. L.; Wang, S. R.; Song, C. F.; Li, C. Z.*, Highly Selective Hydrodeoxygenation of Lignin to Naphthenes over Three-Dimensional Flower-like Ni2P Derived from Hydrotalcite. ACS Catalysis 2022. 12, 1338-1356.\r
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Wu, K.; Li, X. X.; Wang, W. Y.*; Huang, Y. P.; Jiang, Q. K.; Li, W. S.; Chen, Y. Q.; Yang, Y. Q.; Li, C. Z.*, Creating Edge Sites within the Basal Plane of a MoS2 Catalyst for Substantially Enhanced Hydrodeoxygenation Activity. ACS Catalysis 2022, 12, 8-17.\r
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Diao, X.; Jia, N.*; Li, X.; Rong, Y.; Zhao, Y.; Lu, X.; Song, C.; Liu, C.; Chen, G.; Ma, L.; Wang, S.; Liua, Q.; Li, C.*, Fabricating High Temperature Stable Mo-Co9S8/Al2O3 Catalyst for Selective Hydrodeoxygenation of Lignin to Arenes. Applied Catalysis B: Environmental 2022, 305, 121067.\r
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Li, X. X.; Ding, Y., Pan, X. L.; Xing, Y., Zhang, B.*; Liu, X.; Li, C. Z.*, Scission of C–O and C–C linkages in lignin over RuRe alloy catalyst, Journal of Energy Chemistry 2022, 67 492–499.\r
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Zhang, B.; Guo, T. L.; Liu, Y. X.; Kuhn, F. E.; Wang, C.; Zhao, Z. B. K.; Xiao, J. L.; Li, C. Z.*; Zhang, T., Sustainable Production of Benzylamines from Lignin. Angewandte Chemie-International Edition 2021, 60 (38), 20666-20671.\r
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Pang, J. F.; Zhang, B.; Jiang, Y.; Zhao, Y.; Li, C. Z.*; Zheng, M. Y.*; Zhang, T., Complete conversion of lignocellulosic biomass to mixed organic acids and ethylene glycol via cascade steps. Green Chemistry 2021, 23 (6), 2427-2436.\r
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Xiao, Y. X.; Meng, Q. W.; Pan, X. L.; Zhang, C.*; Fu, Z. H.*; Li, C. Z.*, Selective production of bio-basedpara-xylene over an FeOx-modified Pd/Al(2)O(3)catalyst. Green Chemistry 2020, 22 (13), 4341-4349.\r
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Wu, K.; Wang, W. Y.*; Guo, H. W.; Yang, Y. Q.; Huang, Y. P.; Li, W. S.; Li, C. Z.*, Engineering Co Nanoparticles Supported on Defect MoS2-x for Mild Deoxygenation of Lignin-Derived Phenols to Arenes. ACS Energy Lett 2020, 5 (4), 1330-1336.\r
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Liu, Y. X.; Li, C. Z.*; Miao, W.; Tang, W. J.; Xue, D.; Xiao, J. L.; Zhang, T.; Wang, C., Rhodium-terpyridine catalyzed redox-neutral depolymerization of lignin in water. Green Chemistry 2020, 22 (1), 33-38.\r
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Zhang, B.; Qi, Z. J.; Li, X. X.; Ji, J. W.; Zhang, L. T.; Wang, H.; Liu, X. Y.; Li, C. Z.*, Cleavage of lignin C-O bonds over a heterogeneous rhenium catalyst through hydrogen transfer reactions. Green Chemistry 2019, 21 (20), 5556-5564.\r
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Liu, Y. X.; Li, C. Z.*; Miao, W.; Tang, W. J.; Xue, D. Q.; Li, C.; Zhang, B.; Xiao, J. L.; Wang, A. Q.; Zhang, T.; Wang, C.*, Mild Redox-Neutral Depolymerization of Lignin with a Binuclear Rh Complex in Water. ACS Catalysis 2019, 9 (5), 4441-4447.\r
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Jiang, L.; Guo, H. W.; Li, C. Z.*; Zhou, P.; Zhang, Z. H.*, Selective cleavage of lignin and lignin model compounds without external hydrogen, catalyzed by heterogeneous nickel catalysts. Chemical Science 2019, 10 (16), 4458-4468.\r
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Guo, H. W.; Miles-Barrett, D. M.; Zhang, B.; Wang, A. Q.; Zhang, T.; Westwood, N. J.*; Li, C. Z.*, Is oxidation-reduction a real robust strategy for lignin conversion? A comparative study on lignin and model compounds. Green Chemistry 2019, 21 (4), 803-811.\r
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Guo, H. W.; Miles-Barrett, D. M.; Neal, A. R.; Zhang, T.; Li, C. Z.*; Westwood, N. J.*, Unravelling the Enigma of LigninOX: Can the Oxidation of Lignin be Controlled? Chemcial Science 2018, 9, 702-711.\r
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Dai, T.; Li, C. Z.*; Li, L.; Zhao, Z. B. K.; Zhang, B.; Cong, Y.; Wang, A. Q.*, Selective Production of Renewable para-Xylene by Tungsten Carbide Catalyzed Atom-Economic Cascade Reactions. Angewandte Chemie-International Edition 2018, 57 (7), 1808-1812.

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