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姓 名: | 覃正兴 |
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职 称: | 教授 | ||||||||
导师类别: | |||||||||
系 室: | 重质油国家重点实验室 | ||||||||
研究领域: | 分子筛,多相催化,绿色化学 | ||||||||
电子邮箱: | zhengxing.qin@upc.edu.cn | ||||||||
联系电话: | 17853267712 | ||||||||
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◎教育背景 | |||||||||
2000-2004,长江大学化学与环境工程学院化学工艺专业,工学学士 2004-2011,中国石油大学(北京),硕博连读 | |||||||||
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◎工作经历 | |||||||||
2011-2016,法国国家科学研究中心催化与光谱化学研究所,博士后 2017-2025,中国石油大学(华东)化学化工学院,副教授 2026年起,中国石油大学(华东)化学化工学院,教授 | |||||||||
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◎研究方向 | |||||||||
[1] 沸石分子筛合成、改性 [2] 分子筛催化 [3] 绿色化学 | |||||||||
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◎科研项目 | |||||||||
[1] 3项国家自然科学基金面上项目: ü 缺陷诱导下绿色高效低成本多级孔分子筛的因势构筑与催化应用,2022-2025 ü 分子筛交生结构的设计合成与催化性能研究,2025-2028 ü 超薄富铝壳层多级孔纳米分子筛可控制备及成型催化剂在废塑料裂解中的应用,2027-2030 [2] 1项国自然青年项目:基于晶体缺陷的分子筛孔结构的多尺度调控与催化性能的优化,2028-2020 [3] 4项中国石油国际合作项目: ü 介孔YZSM-5复合分子筛的一步法合成工艺和表征研究(国际合作项目) ü 纳米短b轴ZSM-5分子筛合成路线设计和小试研究(国际合作项目) ü 纳米小孔径分子筛合成路线设计和小试研究(国际合作项目) ü 新形势下深化国际交流合作、提升化工领域核心竞争力(软科学课题) [4] 参与国家自然科学基金重大项目:分子筛催化剂的精准控制合成,2020-2025 [5] 青岛市源头创新计划人才发展专项:基于晶体缺陷的分子筛孔结构的多尺度调控及其催化性能研究,2019-2021 [6] 2项国家科技部外国专家项目: ü 分子筛催化剂的精准控制合成,2023-2024 ü 多级孔分子筛的精准控制合成,2021-2022 | |||||||||
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◎代表性论文及专利 | |||||||||
1.论文 1.赵嘉琦, 申., 覃正兴, Camille Longue, Nourrdine Chaouati, 张锐哲, 陈晓, Shunsuke Asahina, Natsuko Asano, Gabriel Rueff, Eddy Dib, 孙洪满, 康利彬, 王久江, 赵红娟, 刘宏海, 徐舒涛, Ludovic Pinard, 阎子峰, Svetlana Mintov a, 纯无机体系下超薄纳米ZSM-5分子筛的合成. 催化学报 2026, 89, 464-476. 2.Yue, Q.; Wu, J.; Liu, H.; Kaleta, A.; Dalena, F.; Piva, D. H.; Ruterana, P.; Zhao, J.; Qin, Z.; Gao, X.; Yan, Z.; Mintova, S., Seeded growth of urea-promoted ZSM-5 nanoplates with short b-axis thickness for enhanced methanol-to-olefin reactions. Inorganic Chemistry Frontiers 2026, 13 (7), 2925-2935. 3.Xu, J.; Gao, Y.; Deng, Q.; Ding, X.; Qin, Z.; Zhang, Y.; Yue, Q.; Pace, L.; Lin, S.; Niu, J.; Asahina, S.; Asano, N.; Xu, Z.; Han, L.; Wei, Y.; Liu, Z.; Mintova, S.; Xu, S., Unraveling Zeolite Heterogeneity and Its Impact on Catalysis. Journal of the American Chemical Society 2026, 148 (22), 23097-23108. 4.Wang, Y.; Zhang, X.; Zhao, J.; You, X.; Li, J.; Qin, Z.; Dutta Chowdhury, A., Repurposing fluid catalytic cracking catalysts for methanol conversion: route selection and deactivation of fingerprints. Inorganic Chemistry Frontiers 2026, 13 (7), 2947-2960. 5.Wang, B.; Qin, Z.; Zhang, R.; Moldovan, S.; Chaouati, N.; Asahina, S.; Dib, E.; Shen, Y.; Chen, X.; Zhao, H.; Wang, J.; Pinard, L.; Yan, Z.; Mintova, S., Weaving Zeolite into Long-Lived Catalysts. Advanced Functional Materials 2026, 36 (28), e28025. 6.Chaouati, N.; Zhang, R.; Qin, Z.; Liu, H.; Gao, X.; Gilson, J.-P.; Pinard, L.; Mintova, S., Influence of Acidity and Phase Intimacy on n-Hexane Cracking Over USY/ZSM-5 Binary Catalysts. 2026, 18 (5), e00020. 7.Zhang, R.; Wang, B.; Xu, J.; Liu, H.; Zhao, H.; Wang, J.; Xu, S.; Asahina, S.; Dalena, F.; Longue, C.; Louis, B.; Pinard, L.; Moldovan, S.; Qin, Z.; Gao, X.; Mintova, S., Zeolite composite prepared by quasi-in situ interzeolite conversion approach. Chem Catalysis 2025, 5 (5), 101298. 8.Wang, B.; Dib, E.; You, X.; Zhang, R.; Shen, Y.; An, Q.; Wang, R.; Wang, L.; Dutta Chowdhury, A.; Qin, Z.; Mintova, S., Asymmetric Molecular-Driven Aluminum Distribution and Nanocrystalline Assembly in BEA Zeolite Catalysts. ACS Catalysis 2025, 15 (22), 19410-19423. 9.Tang, K.; Liu, X.; Jiang, G.; Zhang, Y.; Meng, X.; Lu, J.; Zhang, H.; Gao, Y.; Qin, Z.; Lin, F., Modulating oxygen vacancies to simultaneously promote Pd atom stability and O activation over Pd/CeO2 catalysts for enhancing catalytic efficiency and durability. CrystEngComm 2025, 27 (29), 4956-4964. 10.Shen, Y.; Qin, Z.; Beuque, A.; Dib, E.; Asahina, S.; Asano, N.; Costa, I. C. M.; Zhang, R.; Wang, L.; Xu, J.; Zhao, H.; Wang, J.; Pinard, L.; Mintova, S., Simultaneous Modulation of Mesoporosity and Al Siting for Superior Performance Zeolite Catalyst in Ethylene Dehydroaromatization to Aromatics. Angewandte Chemie International Edition 2025, 64 (37), e202508909. 11.Liu, T.; Lv, Z.; Qu, Y.; Jin, J.; Wang, Y.; Qin, Z.; Wang, J.; Liu, H.; Yan, Z.; Sun, H., Organic acid-functionalized transition metal-free layered CaO-based dual-function materials for enhanced integrated CO2 capture and utilization. Chemical Engineering Journal 2025, 526, 170847. 12.Dong, Z.; Peng, B.; Xiao, N.; Chen, W.; Lei, T.; Wang, M.; Li, C.; Zhang, R.; Qin, Z.; Liu, X.; Wen, X.; Li, M.; Ma, D.; Zhang, F., Efficient conversion of polyethylene to light olefins by self-confined cracking and reforming. Nature Communications 2025, 16 (1), 7964. 13.Dib, E.; Yue, Q.; Confalonieri, G.; Salusso, D.; Vayssilov, G. N.; Barreau, M.; Gramatikov, S. P.; Arletti, R.; Dalena, F.; Lomachenko, K. A.; Honorato Piva, D.; Valtchev, V.; Qin, Z.; Yan, Z.-F.; Gao, X.; Fayon, F.; Zafeiratos, S.; Lebedev, O. I.; Mintova, S., Germanium Atoms Exceed the Tetrahedral Coordination in MFI Zeolite. Journal of the American Chemical Society 2025, 147 (4), 3274-3282. 14.Shen, Y.; Zhang, S.; Qin, Z.; Beuque, A.; Pinard, L.; Asahina, S.; Asano, N.; Zhang, R.; Zhao, J.; Fan, Y.; Liu, X.; Yan, Z.; Mintova, S., Effect of Mixing Order of Si and Al Sources on the Inner Architecture and Catalytic Performance of ZSM-5 Zeolites. ACS Catalysis 2024, 3766-3777. 15.Lu, P.; Xu, J.; Sun, Y.; Guillet-Nicolas, R.; Willhammar, T.; Fahda, M.; Dib, E.; Wang, B.; Qin, Z.; Xu, H.; Cho, J.; Liu, Z.; Yu, H.; Yang, X.; Lang, Q.; Mintova, S.; Zou, X.; Valtchev, V., A stable zeolite with atomically ordered and interconnected mesopore channel. Nature 2024, 636 (8042), 368-373. 16.Liu, H.; Cui, W.; Shen, Y.; Cheng, Y.; Yu, J.; Yang, G.; Qin, Z.; Chen, Y., Hierarchical carbon with microporous core and mesoporous shell for efficient oxygen reduction application. Microporous and Mesoporous Materials 2024, 368, 113011. 17.Yue, Q. D.; Liu, C. W.; Zhao, H. J.; Liu, H. H.; Ruterana, P.; Zhao, J. Q.; Qin, Z. X.; Mintova, S., Urea-assisted morphological engineering of MFI nanosheets with tunable b-thickness. Nano Research 2023. 18.Wang, Z. H.; Meng, T. T.; Xu, J. N.; Shen, Y. F.; Zhou, Y. D.; Liu, Y. H.; Fan, D.; Liu, X. M.; Xu, S. T.; Qin, Z. X., Tailor-Made Nanoseeds for the Synthesis of Zeolites with Nanosized Dimensions. Crystal Growth & Design 2023, 23 (9), 6450-6460. 19.Qin, Z.; Wang, Y.; Asano, N.; Shen, Y.; Valtchev, V.; Asahina, S.; Mintova, S., Imaging Zeolite Architecture by High Resolution Scanning Electron Microscopy: When Physical and Chemical Etching Meet. JEOL NEWS 2023, 58 (1), 11-20. 20.Cheng, M.; Cruchade, H.; Pinard, L.; Dib, E.; Liu, H.; Wang, J.; Liu, X.; Yan, Z.-F.; Qin, Z.; Mintova, S., Coke relocation and Mo immobilization in donut-shaped Mo/HZSM-5 catalysts for methane dehydroaromatization. Journal of Materials Chemistry A 2023, 11 (45), 24991-24998. 21.Wu, Q.; Fan, C.; Wang, Y.; Chen, X.; Wang, G.; Qin, Z.; Mintova, S.; Li, J.; Chen, J., Direct incorporating small amount of Ce (III) in Cu-SAPO-18 catalysts for enhanced low-temperature NH3-SCR activity: Influence on Cu distribution and Si coordination. Chemical Engineering Journal 2022, 435, 134890. 22.Qin, Z.; You, Z.; Bozhilov, K. N.; Kolev, S. K.; Yang, W.; Shen, Y.; Jin, X.; Gilson, J.-P.; Mintova, S.; Vayssilov, G. N.; Valtchev, V., Dissolution Behavior and Varied Mesoporosity of Zeolites by NH4F Etching. Chemistry – A European Journal 2022, 28 (16), e202104339. 23.Qin, Z.; Wang, B.; Asano, N.; Wang, L.; Zhou, Y.; Liu, X.; Shen, B.; Mintova, S.; Asahina, S.; Valtchev, V., Towards a comprehensive understanding of mesoporosity in zeolite Y at the single particle level. Inorganic Chemistry Frontiers 2022, 9 (10), 2365-2373. 24.Qin, Z.; Liu, X.; Yan, Z., Porous materials for future energy. Inorganic Chemistry Frontiers 2022, 9 (22), 5710-5713. 25.Niu, Q.; Wei, L.; Zhang, L.; Qin, Z.; Hao, K.; Hu, C.; Wen, X.; Shen, B.; Tao, Z.; Yang, Y.; Li, Y., Insight into stepwise dealumination in acid-treatment of IM-5 for catalytic cracking of n-heptane and Fischer-Tropsch naphtha. Microporous and Mesoporous Materials 2022, 342, 112117. 26.Asano, N.; Asahina, S.; Lu, J.; Xu, J.; Shen, Y.; Qin, Z.; Mintova, S., Advanced scanning electron microscopy techniques for structural characterization of zeolites. Inorganic Chemistry Frontiers 2022, 9 (16), 4225-4231. 27.Wang, C.; Xu, W.; Qin, Z.; Guo, H.; Liu, X.; Mintova, S., Highly active Pd containing EMT zeolite catalyst for indirect oxidative carbonylation of methanol to dimethyl carbonate. Journal of Energy Chemistry 2021, 52, 191-201. 28.Shen, Y.; Xu, M.; Li, j.; Qin, Z.; Wang, C.; Mintova, S.; Liu, X., Preparation of core–shell-like zeolites by diffusion controlled chemical etching. Inorganic Chemistry Frontiers 2021, 8 (8), 2144-2152. 29.Shen, Y.; Qin, Z.; Asahina, S.; Asano, N.; Zhang, G.; Qian, S.; Ma, Y.; Yan, Z.; Liu, X.; Mintova, S., The inner heterogeneity of ZSM-5 zeolite crystals. Journal of Materials Chemistry A 2021, 9 (7), 4203-4212. 30.Qin, Z.; Zeng, S.; Melinte, G.; Bučko, T.; Badawi, M.; Shen, Y.; Gilson, J.-P.; Ersen, O.; Wei, Y.; Liu, Z.; Liu, X.; Yan, Z.; Xu, S.; Valtchev, V.; Mintova, S., Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances. Advanced Science 2021, 8 (17), 2100001. 31.Lin, D.; Zhang, Q.; Qin, Z.; Li, Q.; Feng, X.; Song, Z.; Cai, Z.; Liu, Y.; Chen, X.; Chen, D.; Mintova, S.; Yang, C., Reversing Titanium Oligomer Formation towards High-Efficiency and Green Synthesis of Titanium-Containing Molecular Sieves. Angewandte Chemie-International Edition 2021, 60 (7), 3443-3448. 32.Bozhilov, K. N.; Le, T. T.; Qin, Z.; Terlier, T.; Palčić, A.; Rimer, J. D.; Valtchev, V., Time-resolved dissolution elucidates the mechanism of zeolite MFI crystallization. Science Advances 2021, 7 (25), eabg0454. 33.Wang, C.; Xu, W.; Qin, Z.; Liu, X.; Mintova, S., Low -temperature synthesis of ?-alumina nanosheets on microfibrous- structured Al -fibers for Pd -catalyzed CO oxidative coupling to dimethyl oxalate. Catalysis Today 2020, 354, 158-166. 34.Qin, Z.; Shen, W.; Zhou, S.; Shen, Y.; Li, C.; Zeng, P.; Shen, B., Defect-assisted mesopore formation during Y zeolite dealumination: The types of defect matter. Microporous and Mesoporous Materials 2020, 303, 110248. 35.Qin, Z.; Hafiz, L.; Shen, Y.; Van Daele, S.; Boullay, P.; Ruaux, V.; Mintova, S.; Gilson, J.-P.; Valtchev, V., Defect-engineered zeolite porosity and accessibility. Journal of Materials Chemistry A 2020, 8 (7), 3621-3631. 36.Lyu, Y.; Liu, X.; Liu, W.; Tian, Y.; Qin, Z., Adsorption/oxidation of ethyl mercaptan on Fe-N-modified active carbon catalyst. Chemical Engineering Journal 2020, 393, 124680. 37.He, P.; Ding, J.; Qin, Z.; Tang, L.; Haw, K.-G.; Zhang, Y.; Fang, Q.; Qiu, S.; Valtchev, V., Binder-free preparation of ZSM-5@silica beads and their use for organic pollutant removal. Inorganic Chemistry Frontiers 2020, 7 (10), 2080-2088. 38.Haw, K.-G.; Moldovan, S.; Tang, L.; Qin, Z.; Fang, Q.; Qiu, S.; Valtchev, V., A sponge-like small pore zeolite with great accessibility to its micropores. Inorganic Chemistry Frontiers 2020. 39.Gu, Y.; Wang, X.; Qin, Z.; Mintova, S.; Liu, X., Intra-crystalline mesoporous ZSM-5 zeolite by grinding synthesis method. Microporous and Mesoporous Materials 2020, 306. 40.Babic, V.; Tang, L.; Qin, Z.; Hafiz, L.; Gilson, J.-P.; Valtchev, V., Comparative Study of Zeolite L Etching with Ammonium Fluoride and Ammonium Bifluoride Solutions. Advanced Materials Interfaces 2020. 41.Wang, C.; Xu, W.; Qin, Z.; Mintova, S., Spontaneous galvanic deposition of nanoporous Pd on microfibrous-structured Al-fibers for CO oxidative coupling to dimethyl oxalate. Catalysis Communications 2019, 119, 39-41. 42.Qin, Z.; Pinard, L.; Benghalem, M. A.; Daou, T. J.; Melinte, G.; Ersen, O.; Asahina, S.; Gilson, J.-P.; Valtchev, V., Preparation of Single-Crystal “House-of-Cards”-like ZSM-5 and Their Performance in Ethanol-to-Hydrocarbon Conversion. Chemistry of Materials 2019, 31 (13), 4639-4648. 43.Palcic, A.; Ordomsky, V. V.; Qin, Z. X.; Georgieva, V.; Valtchev, V., Tuning Zeolite Properties for a Highly Efficient Synthesis of Propylene from Methanol. Chemistry-a European Journal 2018, 24 (50), 13136-13149. 44.Qin, Z.; Cychosz, K. A.; Melinte, G.; El Siblani, H.; Gilson, J.-P.; Thommes, M.; Fernandez, C.; Mintova, S.; Ersen, O.; Valtchev, V., Opening the Cages of Faujasite-Type Zeolite. Journal of the American Chemical Society 2017, 139 (48), 17273-17276. 45.Qin, Z.; Melinte, G.; Gilson, J.-P.; Jaber, M.; Bozhilov, K.; Boullay, P.; Mintova, S.; Ersen, O.; Valtchev, V., The Mosaic Structure of Zeolite Crystals. Angewandte Chemie International Edition 2016, 55 (48), 15049-15052. 46.Gilson, J.-P.; Lakiss, L.; Ngoye, F.; Canaff, C.; Laforge, S.; Pouilloux, Y.; Qin, Z.; Tarighi, M.; Thomas, K.; Valtchev, V.; Vicente, A.; Fernandez, C.; Pinard, L., Mesoporosity in zeolites: a tool to mitigate their deactivation by coking and optimize their regeneration. Abstracts of Papers of the American Chemical Society 2016, 252. 47.Chen, X.; Vicente, A.; Qin, Z.; Ruaux, V.; Gilson, J.-P.; Valtchev, V., The preparation of hierarchical SAPO-34 crystals via post-synthesis fluoride etching. Chemical Communications 2016, 52 (17), 3512-3515. 48.Qin, Z.; Gilson, J.-P.; Valtchev, V., Mesoporous zeolites by fluoride etching. Current Opinion in Chemical Engineering 2015, 8, 1-6. 49.Lakiss, L.; Ngoye, F.; Canaff, C.; Laforge, S.; Pouilloux, Y.; Qin, Z.; Tarighi, M.; Thomas, K.; Valtchev, V.; Vicente, A.; Pinard, L.; Gilson, J.-P.; Fernandez, C., On the remarkable resistance to coke formation of nanometer-sized and hierarchical MFI zeolites during ethanol to hydrocarbons transformation. Journal of Catalysis 2015, 328, 165-172. 50.Gilson, J.-P.; Lakiss, L.; Qin, Z.; Valtchev, V.; Thomas, K.; Vicente, A.; Fernandez, C.; Ngoye, F.; Laforge, S.; Canaff, C.; Pouilloux, Y.; Pinard, L., Coke management on zeolites: The benefits of hierarchization. Abstracts of Papers of the American Chemical Society 2015, 249. 51.Shen, B.; Mi, S.; Guo, D.; Qin, Z.; Ren, S.; Guo, Q.; Zhao, H.; Wang, B.; Liu, H.; Gao, X., Mesopore structure controlled conversion and products selectivity in the design of heavy oil catalytic cracking catalyst. Abstracts of Papers of the American Chemical Society 2014, 248. 52.Qin, Z.; Lakiss, L.; Tosheva, L.; Gilson, J.-P.; Vicente, A.; Fernandez, C.; Valtchev, V., Comparative Study of Nano-ZSM-5 Catalysts Synthesized in OH− and F− Media. Advanced Functional Materials 2014, 24 (2), 257-264. 53.Ngoye, F.; Lakiss, L.; Qin, Z.; Laforge, S.; Canaff, C.; Tarighi, M.; Valtchev, V.; Thomas, K.; Vicente, A.; Gilson, J. P.; Pouilloux, Y.; Fernandez, C.; Pinard, L., Mitigating coking during methylcyclohexane transformation on HZSM-5 zeolites with additional porosity. Journal of Catalysis 2014, 320, 118-126. 54.Chen, X.; Todorova, T.; Vimont, A.; Ruaux, V.; Qin, Z.; Gilson, J.-P.; Valtchev, V., In situ and post-synthesis control of physicochemical properties of FER-type crystals. Microporous and Mesoporous Materials 2014, 200, 334-342. 55.Shen, B.; Qin, Z.; Zhou, S.; Guo, Q.; Gao, X.; Wang, B.; Zhao, H.; Liu, H., NaY framework desilication induced mesopore formation in USY zeolite and its application as the active component of heavy oil catalytic cracking catalyst. Abstracts of Papers of the American Chemical Society 2013, 245. 56.Qin, Z.; Shen, B.; Yu, Z.; Deng, F.; Zhao, L.; Zhou, S.; Yuan, D.; Gao, X.; Wang, B.; Zhao, H.; Liu, H., A defect-based strategy for the preparation of mesoporous zeolite Y for high-performance catalytic cracking. Journal of Catalysis 2013, 298, 102-111. 57.Qin, Z.; Lakiss, L.; Gilson, J. P.; Thomas, K.; Goupil, J. M.; Fernandez, C.; Valtchev, V., Chemical Equilibrium Controlled Etching of MFI-Type Zeolite and Its Influence on Zeolite Structure, Acidity, and Catalytic Activity. Chemistry of Materials 2013, 25 (14), 2759-2766. 58.Shen, B.; Qin, Z.; Gao, X.; Lin, F.; Zhou, S.; Shen, W.; Wang, B.; Zhao, H.; Liu, H., Desilication by Alkaline Treatment and Increasing the Silica to Alumina Ratio of Zeolite Y. Chinese Journal of Catalysis 2012, 33 (1), 152-163. 59.Gao, X.; Qin, Z.; Wang, B.; Zhao, X.; Li, J.; Zhao, H.; Liu, H.; Shen, B., High silica REHY zeolite with low rare earth loading as high-performance catalyst for heavy oil conversion. Applied Catalysis a-General 2012, 413, 254-260. 60.Qin, Z.; Shen, B.; Gao, X.; Lin, F.; Wang, B.; Xu, C., Mesoporous Y zeolite with homogeneous aluminum distribution obtained by sequential desilication–dealumination and its performance in the catalytic cracking of cumene and 1,3,5-triisopropylbenzene. Journal of Catalysis 2011, 278 (2), 266-275 2.专利:授权国内外专利10余项 [1] 一种制备复合分子筛的方法,ZL201811455884.4 [2] 国际专利Method for the preparation of synthetic crystalline zeolite materials with enhanced pore volume,WO 2015/101800A1 | |||||||||
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◎代表性著作 | |||||||||
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◎获奖情况及荣誉称号 | |||||||||
[1] 厅局级教学成果一等奖:新时代具有国际视野的化工创新人才培养体系的构建及实践,2020 [2] 中国石油基础研究奖一等奖:预置缺陷位诱导Y型分子筛晶内介孔形成的构建方法,2019 [3] 高等学校科学研究优秀成果奖技术发明奖:高硅铝比NaY分子筛的合成和改性技术与工业应用,2016 | |||||||||
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◎执教课程 | |||||||||
本科生:《沟通与写作》,《先进多孔材料概论》,《大学化学》 硕士生:《固体表面化学》 博士生:《材料与催化技术进展》 留学生:《Principles of catalysis》 | |||||||||
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◎招收及指导研究生情况 | |||||||||
1.指导研究生情况 截止2026年,累计指导学生51名,指导博士研究生12名,硕士研究生32名,国际留学生7名。 2.招生专业及要求 招收化学工程与技术专业学术型硕博研究生、化学工程专业型硕博研究生。因项目合作需要,英语口语、听力、写作能力强的化学、化工相关专业学生优先考虑。 | |||||||||
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◎学术兼职 | |||||||||
[1] 国际分子筛协会合成委员会委员、山东化学化工学会分子筛专委会副主任委员、第21届全国分子筛学术大会秘书 [2] Inorganic Chemistry Frontiers、Catalysis Today客座编辑 [3] 法国国家科研署(ANR)基金通讯评审专家 [4] JACS, Inorganic Chemistry Frontiers, Microporous Mesoporous Materials等期刊审稿人 | |||||||||
