王浩
姓名:王浩
职称:教授/博导
联系方式:haowang@sxu.edu.cn.
介绍:
王浩,男,山东济南人,博士,教授,博士生导师。长期从事多相催化、烃醇催化转化、精细化学品合成、胶体界面与油田化学、分子筛合成和纳米多孔材料制备等领域的研究工作。“山西省科技创新领军团队”主要成员,获2019年度山西省“三晋英才-拔尖骨干人才”称号。作为项目负责人主持国家自然科学基金面上项目3项,省部级项目8项,工业化项目2项;作为主要成员参加中科院战略性先导科技专项、科技部973计划、国家自然科学基金重点项目等多项重大科研项目。目前担任国家自然科学基金评审专家,山西省自然科学基金评审专家,山西省国际科技交流协会理事,山西省煤炭协会高级专家等;同时担任国内外多种知名刊物审稿人,在Appl. Catal. B: Environ、Chem. Eng. J、J. Catal、ACS Appl. Mater. Interfaces、Chem. Commun、Appl. Surf. Sci、Langmuir等国内外权威学术刊物上发表论文50余篇。已培养博士研究生5名,硕士研究生12名。
学习与工作经历:
2021.07-至今 山西大学 化学化工学院/精细化学品工程研究中心 教授
2017.10-2021.07 中科院山西煤化所 煤转化国家重点实验室 研究员
2010.02-2017.10 中科院山西煤化所 煤转化国家重点实验室 副研究员
2008.10-2009.09 瑞典隆德大学(Lund University) 物理化学系 博士后
2007.09-2008.09 加拿大阿尔伯塔大学(University of Alberta)化工系 博士后
2004.09-2007.07 中国科学院化学研究所 理学博士
2001.09-2004.07 山东大学 化学与化工学院 理学硕士
1994.09-1998.07 山东大学 化学与化工学院 学士
研究方向:
多相催化、烃醇催化转化、精细化学品合成、胶体界面化学与油田化学、分子筛催化剂合成和纳米多孔材料制备等。
讲授课程:
精细化工工艺学,表面活性剂化学及工艺,化工基础实验等。
主持科研项目:
1) 国家自然科学基金面上项目(22272097),2023.1.1-2026.12.31,54万。
2) 国家自然科学基金面上项目(21773281),2018.1.1-2021.12.31,65万。
3) 国家自然科学基金面上项目(21273263),2013.1.1-2016.12.31,82万。
4) 山西省回国留学人员科研教研资助项目,2023.7-2026.07,6万。
5) 山西省人社厅留学人员科技活动项目,2016.1.1-2018.12.31,5万。
6) 山西省回国留学人员科研资助项目(2014-102),2014.1.1-2016.12.31,7万。
7) 山西省自然科学基金面上项目,2012.01-2014.12,5万。
8) 教育部留学回国人员资助项目,2013.01-2015.12,3万。
9) 中国科学院青年人才项目,2011.1-2013.12,40万。
10)国家科技部自主研究课题,2010.6-2012.12,40万。
11)中国科学院人才引进科研启动项目,2010.3-2015.12,50万。
参与科研项目:
12)中国科学院重点部署项目,2017.05-2019.04,420万元。
13)山西省重大国际科技合作课题,2016.10-2019.10,507万元。
14)中国科学院战略性先导科技专项,2012.02-2016.12,2718万。
15)国家科技部973计划(2011CB201403),2011.01-2015.12,290万。
16)国家自然科学基金重点项目(21227002),2013.01-2016.12,300万。
17)国家自然科学基金(51302282),2014.01-2016.12。
代表性论文:
1) H. Wang*, L. Ji, L. Li, X. Guo, H. Li, Y. Zhang, J. Ren*, C. Zhang, Y. Zhao, Highly selective hydrogenation of maleic anhydride to succinic anhydride over confined nickel catalyst anchored on MOR zeolite, Chemical Engineering Journal, 2025, 523, 168430, https://doi.org/10.1016/j.cej.2025.168430.
2) L. Li, J. Liang, J. Zhu*, Y. Zhao, H. Wang*, Advances in the preparation and application of nanoconfined metal catalysts composed of porous materials, Molecular Catalysis, 2025, 582, 115175.
3) X. Huang, H. Li, B. Zhang, Y. Zhang, H. Wang, L. Ban, Y. Xu, Y. Zhao, Dependence of copper(I) stability on long-range electromagnetic effects of Au under reducing atmospheres: the size effect of Au cores, Nanoscale, 2024, 16, 1971-1982.
4) L. Ji, H. Li, Y. Zhao, H. Wang*, Research Progress on the Application of Molecular Sieve Supported Catalysts in Hydrogenation Reaction, Acta Petrolei Sinica, 2024, 40(2): 404-415.
5) Q. Zhang, X. Liao, S. Liu, H. Wang*, Y. Zhang*, Y. Zhao*, Tuning Particle Sizes and Active Sites of Ni/CeO2 Catalysts and Their Influence on Maleic Anhydride Hydrogenation, Nanomaterials 2022, 12, 2156.
6) S. Liu, X. Liao, Q. Zhang, Y. Zhang*, H. Wang*, Y. Zhao*, Crystal-Plane and Shape Influences of Nanoscale CeO2 on the Activity of Ni/CeO2 Catalysts for Maleic Anhydride Hydrogenation, Nanomaterials 2022, 12(5), 762.
7) H. Ma, J. Liao, Z. Wei, X. Tian, J. Li, Y. Chen, S. Wang, H. Wang, M. Dong, Z. Qin, J. Wang, W. Fan, Trimethyloxonium ion-a zeolite confined mobile and efficient methyl carrier at low temperatures: a DFT study coupled with microkinetic analysis, Catal. Sci. Technol, 2022, 12(10), 3328-3342.
8) M. Gao, H. Tan, P. Zhu, J. Zhang, H. Wang*, X. Liu*, Z. Zheng*, Why phenol is selectively hydrogenated to cyclohexanol on Ru (0001): an experimental and theoretical study, Applied Surface Science, 2021, 558, 149880.
9) D. Shi, S. Wang, H. Wang*, P. Wang, L. Zhang, Z. Qin, J. Wang, H. Zhu*, W. Fan*, Synthesis of HZSM-5 Rich in Paired Al and Its Catalytic Performance for Propane Aromatization, Catalysts 2020, 10(6), 622-641.
10) Y. Luo, S. Wang, S. Guo, K. Yuan, H. Wang, M. Dong, Z. Qin, W. Fan, J. Wang, Conversion of syngas into light olefins over the bifunctional ZnCeZrO/SAPO-34 catalysts: Regulation of the surface oxygen vacancy concentration and its relation to the catalytic performance, Catal. Sci. Technol., 2021, 11, 338-348.
11) M. Liu, M. Gao, L. Pei, Y. Ji, X. Gu, H. Wang, H. Tan, J. Zhao, J. Jia, Z. Zheng, Tailoring phenol photomineralization pathway over polymeric carbon nitride with cyano group multifunctional active sites, Applied Catalysis B: Environmental, 2021, 284, 119710.
12) M. Liu, H. Wang, P. Zhu, J. Wang, H. Tan, Z. Zheng, Tuning the oxidation state of copper in CuMgAl hydrotalcite using partially oxidized MoS2 for efficient hydroxylation of phenol, Catalysis Communications, 2019, 129, 105752.
13) H. Wang*, Y. Fan, Y. Wang*, Thermodynamic Association Behaviors of Sodium Dodecyl Sulfate (SDS) with Poly(4-vinylpyridine N-oxide) (PVPNO) at Different pH Values and Ionic Strengths, Journal of Surf. and Detergents 2017, 20(3), 647–657.
14) H. Zhang, J. Wang, Y. Liu, J. Chen, H. Wang, J. Huang, J. Wang, Hierarchical Porous Zeolite ZSM-5/Graphene Nanosheets as Robust Heterogeneous Acid Catalysts, ChemistrySelect, 2017, 2, 5810-5815.
15) L. Zhang, H. Wang*, W. Shen, Z. Qin, J. Wang, W. Fan*, Controlled synthesis of graphitic carbon nitride and its catalytic properties in Knoevenagel condensations, Journal of Catalysis 2016, 344, 293–302.
16) H. Wang, V. Alfredsson, J. Tropsch, R. Ettl, T. Nylander*, Effect of polyelectrolyte and fatty acid soap on the formation of CaCO3 in the bulk and the deposit on hard surfaces, ACS Appl. Mater. Interfaces 2015, 7(38), 21115-21129.
17) Y. Li, H. Wang*, M. Dong, J. Li, Z. Qin, J. Wang, W. Fan*, Effect of zeolite pore structure on the diffusion and catalytic behaviors in the transalkylation of toluene with 1,2,4-trimethylbenzene, RSC Adv., 2015, 5, 66301-66310.
18) L. Zhang, H. Wang*, Z. Qin, J. Wang and W. Fan*, Synthesis of two-dimensional mesoporous carbon nitride under different carbonization temperatures and investigation of its catalytic properties in Knoevenagel condensations, RSC Adv., 2015, 5, 22838-22846.
19) Y. Li, H. Wang*, M. Dong, J. Li, G. Wang, Z. Qin, W. Fan*, J. Wang, Optimization of Reaction Conditions in the Transalkylation of Toluene with 1,2,4-Trimethylbenzene Catalyzed by Beta Zeolite and the Investigation of Its Reaction Mechanism, Acta Chim. Sinica 2016, 74, 529-537.
20) P. Yuan, H. Wang*, Y. Xue, Y. Li, K. Wang, M. Dong, W. Fan, Z. Qin, J. Wang, Catalytic properties of different crystal sizes for ZSM-5 zeolites on the alkylation of benzene with methanol and optimization of the reaction, Acta Phys.-Chim. Sin. 2016, 32 (7), 1775-1784.
21) H. Wang, V. Alfredsson, J. Tropsch, R. Ettl, T. Nylander*, Formation of CaCO3 Deposits on Hard Surfaces – Effect of Bulk Solution Conditions and Surface Properties, ACS Appl. Mater. Interfaces 2013, 5(10), 4035-4045.
22) R. Wang, Z. Wu, C. Chen, Z. Qin, H. Zhu, G. Wang, H. Wang, W. Fan, J Wang, Graphene-supported Au-Pd bimetallic nanoparticles with excellent catalytic performance in selective oxidation of methanol to methyl formate, Chem. Commun, 2013, 49, 8250-8252.
23) L. Zhang, H. Wang *, W. Fan *, J. Wang, Synthesis of Mesoporous Silicas with a Cationic Surfactant-Anionic Polymer Mixture as Templeate, Chin. J. Catal., 2012, 33, 164-173.
24) H. Wang, Y. Wang*, Studies on Interaction of Poly (sodium acrylate) and Poly (sodium styrenesulfonate) with Cationic Surfactants: Effects of Polyelectrolyte Molar Mass, Chain Flexibility, and Surfactant Architecture, J. Phys. Chem. B 2010, 114, 10409-10416.
25) H. Wang, Y. Wang*, H. Yan, J. Zhang, R. Thomas, Binding of Sodium Dodecyl Sulfate with Linear and Branched Polyethyleneimines in Aqueous Solution at Different pH Values, Langmuir 2006, 22, 1526-1533.
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