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个人简介教学科研概况1. Li, J.-Q; Andersson, P. G. Room Temperature and Solvent-Free Iridium-Catalyzed Selective Alkylation of Amines with Alcohols Chem. Commun.2013, 49, 6131-6133. 2. Ma, H.-L.; Li, J.-Q; Sun, L.; Hou, X.-H.; Zhang, Z.-H.; Fu, B. Heteroarylidene-tethered bis(oxazoline) copper complexes catalyzed cascade reaction involving asymmetric FriedelCrafts alkylation/N-hemiacetalization of indoles with beta,gamma-unsaturated alpha-ketoester Tetrahedron.2015, 71, 3625-3631. 3. Ma, H.-L.; Xie, L.; Zhang, Z.-H.; Li, J.-Q; Qin, Z.-.H; Fu, B. Enantioselective Copper(II)Catalyzed Conjugate Addition of Indoles to beta-Substituted Unsaturated Acyl Phosphonates Adv. Synth. Catal.2016, 358, 1011-1016. 4. Li, J.-Q.; Liu, J.-G.; Krajangsri, S.; Chumnanvej, N.; Singh, T.; Andersson, P. G Asymmetric Hydrogenation of Allylic Alcohols Using Ir-N,P-Complexes ACS. Catal. 2016, 6, 8342-8349. 5. Xie, L.; Ma, H.-L.; Li, J.-Q.; Yu, Y.; Qin, Z.-H.; Fu, B. Ni(II)-Catalyzed enantioselective Mukaiyama-Mannich reaction between silyl enol ethers and cyclic N-sulfonyl alphaketiminoesters Org. Chem. Front.2017, 4, 1858-1862. 6. Xie, L.; Bai, H.; Li, J.-Q.; Yu, X.; Zhang, Z.-H.; Fu, B. Cu(II)-catalyzed enantioselective 1,3dipolar cycloaddition of nitrones with alpha, beta-unsaturated acyl phosphonates Tetrahedron.2017, 73, 2923-2930. 7. Xie, L.; Yu, X.; Li, J.-Q.; Zhang, Z.-H.; Qin, Z.-H.; Fu, B. Nickel(II)-Catalyzed Enantioselective 1,3-Dipolar Cycloaddition of Nitrones with alpha,beta-Unsaturated Acylcarboxylates Eur. J. Org.Chem. 2017, 657-661. 8. Yu, X.; Bai, H.; Wang, D.; Qin, Z.-H; Li, J.-Q.; Fu, B. A convenient approach to difluoromethylated all-carbon quaternary centers via Ni(ii)-catalyzed enantioselective Michael addition RSC Adv.2018, 8, 19402-19408. 9. Liu, J.-G.; Krajangsri, S.; Yang, J.; Li, J.-Q.; Andersson, P. G. Nature. Catal.2018, 1, 438-443. 10. Jia, C.; Yuan, X.; Liu, X.; Zhang, L.; Xiao, Y.; Fu, B.; Li, J.-Q.; Qin, Z. Synthesis and Fungicidal Activity of (E)-Methyl 2-(2-((1-cyano-2-hydrocarbylidenehydrazinyl)methyl)phenyl)-2-(methoxyimino)acetates Pest Manag Sci,2019, 75, 3160–3166. 11. Wan, C.; Hong, Q.; Zhang, X.; Zeng, Y.; Yang, D.; Che, C.; Ding, S.; Xiao, Y.; Li, J.-Q.; Qin, Z. Role of the ring methyl groups in 2‘,3’-benzoabscisic acid analogues, J. Agric. Food Chem., 2019, 67, 4995-5007. 12. Li, D.; An, Q.; Wu, Y.; Li, J.-Q.; Pan, C. Foliar Application of Selenium Nanoparticles on Celery Stimulates Several Nutrient Component Levels by Regulating the α‑Linolenic Acid Pathway ACS Sustainable Chem. Eng.2020, 8, 10502−10510。 13. Li, D.; Zhou, C.; Zhang, J.; An, Q.; Wu, Y.; Li, J.-Q.; Pan, C. Nanoselenium Foliar Applications Enhance the Nutrient Quality of Pepper by Activating the Capsaicinoid Synthetic Pathway J. Agric. Food Chem.2020, 68, 9888−9895. 14. Li, D.; Zhou, C. ; Zou, N.; Wu, Y.; Zhang, J.; An, Q.; Li, J.-Q.; Pan, C. Nanoselenium foliar application enhances biosynthesis of tea leaves in metabolic cycles and associated responsive pathways Environ. Pollut.2021, 273, 116503 15. Zhou, C.; Li, D.; Shi, X.; Zhang, J.; An, Q.; Wu, Y.; Kang, L., Li, J.-Q.; Pan, C. Nanoselenium Enhanced Wheat Resistance to Aphids by Regulating Biosynthesis of DIMBOA and Volatile Components J. Agric. Food Chem.2021, 69, 14103−14114. 16. Li, D.; Zhou, C.; Ma, L.; Wu, Y.; Kang, L.; An, Q., Zhang, J.; Deng, K.; Li, J.-Q.; Pan, C. Nanoselenium transformation and inhibition of cadmium accumulation by regulating the lignin biosynthetic pathway and plant hormone signal transduction in pepper plants. J Nanobiotechnol2021, 19, 316. 17. Zhao, F.; Singh, T.; Xiao, Y.; Su, W.; Yang, D. Jia, C.; Li, J.-Q.; Qin, Z. Divergent Synthesis of Substituted Amino-1,2,4-triazole Derivatives, Synthesis, 2021, 5, 1901-1910. 18. Li, D.; Zhou, C.; Wu, Y.; An, Q.; Zhang, J.; Fang, Y.; Li, J.-Q.; Pan, C. Nanoselenium integrates soil-pepper plant homeostasis by recruiting rhizosphere-beneficial microbiomes and allocating signaling molecule levels under Cd stress J. Haz. Mat.2022, 432, 128763. 19. Liu, X.; Tang, D.; Yin, F.; Wang, J.; Zhang, X.; Xiao, Y.; Li, J.-Q.; Qin, Z. Mitochondrion-Targeted Triphenylphosphonium-Based Kresoxim-Methyl Analogues: Synthesis, Fungicidal Activity, and Action Mechanism Approach J. Agric. Food Chem.2022, 70, 13563-13573. 社会职务活动动态研究领域有机合成化学,活性小分子合成,非均相催化 开授课程
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