王海旺

编辑:徐大越 发布时间:2026-03-18 10:02 浏览次数:

姓名:王海旺

性别:男

出生年月:1981年08月

学位:理学博士

职称:教授

导师类型:博士研究生导师

工作单位:东北大学秦皇岛分校资源与材料学院

联系方式

电子邮箱:whwdbdx@neuq.edu.cnwhwdbdx@126.com

联系电话:18630332906

研究方向

新能源纳米催化材料设计与制备、前沿过渡金属氧化物纳米材料表界面调控、有机高分子基纳米复合材料构筑、硅气凝胶纳米复合材料性能优化、有机高分子防渗功能材料开发

教育背景

2005.09-2008.07北京化工大学 材料物理与化学专业 工学硕士

2008.09-2011.06北京理工大学理学院 物理化学专业 理学博士

工作履历

2011.07-至今 东北大学秦皇岛分校资源与材料学院,历任讲师、副教授、教授,从事材料科学与工程领域的教学、科研及研究生培养工作

学术兼职

1. 中国化学学会会员、中国绝热保温学会会员

2. 《New Journal of Chemistry》《Journal of Materials Chemistry A》《RSC Advances》《Colloids and Surfaces A: Physicochemical and Engineering Aspects》等国际期刊同行评审专家

人才计划与荣誉

入选河北省“三三三”人才工程,牵头组建的科研团队获评2014年全国首批“小平科技创新团队”(东北大学秦皇岛分校唯一获评团队)

科研工作成果

长期致力于纳米材料与复合材料的设计、制备及应用基础研究,聚焦新能源催化、环境功能材料、高分子功能材料等研究方向,在纳米催化材料表界面调控、有机-无机杂化材料构筑、功能气凝胶制备等方面取得系列创新性成果。

1. 学术论文:在《Carbon》《Chemical Communications》《ACS Sustainable Chemistry & Engineering》《Small》等国际顶级及知名期刊发表学术论文60余篇,多篇论文入选ESI高被引论文、热点论文,研究成果受到国际同行广泛关注,相关成果为新能源催化与环境功能材料的开发提供理论与技术支撑。

2. 科研项目:作为项目负责人或核心成员,主持/参与国家自然科学基金、河北省自然科学基金等国家、省部级科研项目10余项,围绕纳米杂化材料、半导体纳米材料、高介电复合材料等方向开展系统性研究,攻克多项材料制备与性能调控关键技术。

3. 专利与成果转化:授权国家发明专利30余项,聚焦功能材料产业化应用,推动5项核心技术成果实现产业化转化,实现科研成果与产业需求的深度融合,为相关行业技术升级提供技术支撑。

4. 团队建设:牵头打造的科研创新团队,在新能源与环境材料领域形成稳定的研究方向和梯队,团队成员在国家级、省部级科技竞赛中斩获奖项50余项,其中国家级奖项20余项、省级一等奖及以上30余项,多次刷新学校在相关领域竞赛的最好成绩,培养了一批兼具创新思维与实践能力的高素质材料学科人才。

教学工作成果

深耕高等教育教学改革与实践,融合科研与教学,注重学生创新能力和工程实践能力培养,在课程建设、教学改革、创新创业教育等方面成效显著。

1. 课程建设:主讲本科生《高分子化学》《创业基础》、研究生《材料物理与化学》等核心课程;牵头2023年校级一流课程《高分子化学》建设项目(经费4万元),主持2022-2023年河北省高等教育教学改革研究与实践项目,持续优化材料学科课程体系与教学内容。

2. 教学成果:以第一负责人获河北省教学成果奖二等奖1项、东北大学秦皇岛分校教学成果奖一等奖1项;2018年入选全国高等学校创新创业教育课程“精彩一课”,主讲的《创业基础》获评“河北省普通高校就业创业指导优质课程”,教学质量与课程建设水平获省级权威认可。

3. 创新创业教育:积极推动本科生与研究生创新创业教育,指导学生参与国家级、省部级创新创业竞赛并斩获多项大奖,将科研成果融入创新创业教学,实现“教学-科研-双创”协同发展。

代表性学术论文(*为通讯作者,一区为中科院JCR一区期刊)

[1] Zhang Nuo, Wang Bingzhu, Hu Pengcheng, et al. Wang Haiwang*. Achieve high-efficiency photocatalytic hydrogen production of MCNTs-CdS/Pt/ZnFe₂O₄ heterojunction owing to building charge transport bridge[J]. Journal of Environmental Chemical Engineering, 2025, 13(2): 115800.(一区)

[2] Guo Haonan, Wang Bingzhu, Hu Pengcheng, Wang Haiwang*. Enhancing H₂ evolution activity of MWCNTs-biphasic CdS photocatalyst through microstructure regulation[J]. Journal of Environmental Chemical Engineering, 2025, 13(3): 116417.(一区)

[3] Li Ruorou, Wang Bingzhu, Zhao Yimei, et al. Wang Haiwang*. In-situ growth of WO₃/Bi₂WO₆ heterojunctions on carbon fiber cloth: Design, morphology modulation and photocatalytic performance[J]. Journal of Environmental Chemical Engineering, 2025, 13(5): 118926.(一区)

[4] Cao Weihua, Yang Xiao, Wang Haiwang*, et al. IPN-PUA: An ultra-low density self-lubricating composite with IPN structure–liquid lubricant coupling mechanism[J]. Friction, 2025, 13(8): 9440997.

[5] Sun Qihan, Yang Lin, Hu Fengjie, et al. Wang Haiwang*. Microstructural evolution and kinetics of monoclinic scheelite-type BiVO₄-based materials with enhanced color performance[J]. Ceramics International, 2025, 51(23): 40414-40430.(一区)

[6] Ma Yuan, Wang Bingzhu, Wang Haiwang*, et al. Microstructure regulation and photocatalytic H₂ evolution mechanism of novel MCNTs-Zn₀.₃Cd₀.₇S/Pd composites[J]. International Journal of Hydrogen Energy, 2025, 126:484-495.(一区)

[7] Fang Qimin, Sun Qihan, Ge Jinming, Wang Haiwang*, Qi Jian. Multidimensional Engineering of Nanoconfined Catalysis: Frontiers in Carbon-Based Energy Conversion and Utilization[J]. Catalysts, 2025, 15(5): 477.

[8] Fang Qimin, Sun Qihan, Zhong Ruixia, Wang Haiwang*, Qi Jian. Recent advances in doping engineering of heterogeneous catalyst for carbon dioxide hydrogenation[J]. Materials Today Chemistry, 2025, 46:102770.(一区)

[9] Yang Ke, Li Chenqi, Zhu Qinghan, Wang Haiwang*, Qi Jian. Rich Oxygen Vacancies in Bimetallic MnCo₂O₄.₅ Spheres for Enhancing Lean Methane Catalytic Oxidation[J]. Nanomaterials, 2025, 15(7): 524.

[10] Guo Li, Fu Ziming, Li Haoran, et al. Wang Haiwang*, Qi Jian. Smart hydrogel: A new platform for cancer therapy[J]. Advances in Colloid and Interface Science, 2025, 340:103470.(一区)

[11] Zhao Yihao, Wang Bingzhu, Fang Qimin, et al. Wang Haiwang*. Design and structural control of g-C₃N₄/(Pd)/BiOBr photocatalyst for comprehensive degradation of multi-component wastewater[J]. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2024,12(5):113575.(一区)

[12] Wu Songyang, Wang Bingzhu, Guo Haonan, et al. Wang Haiwang*. Achieve efficient photocatalytic degradation of multiple pollutants by constructing WO3₋ₓ/BiOBr heterojunctions with hierarchical structure on carbon fibre cloths[J]. APPLIED SURFACE SCIENCE,2024,671: 160670.(一区)

[13] Wang Wei, Yang Ke, Zhu Qinghan, et al. Wang Haiwang*, Qi Jian. MOFs-Based Materials with Confined Space: Opportunities and Challenges for Energy and Catalytic Conversion[J]. SMALL, 2024, 2311449.(一区)

[14] Wang Wei, Han Han, Zhulin, Wang Haiwang*, et al. Construction of Co/Mn-based nanowires with adjustable surface state for boosting lean methane catalytic oxidation[J]. CERAMICS INTERNATIONAL, 2024,50(1): 2293-2302(一区)

[15] Xie Changxiang, Wang Bingzhu, Wang Guanqi, Wang Haiwang*. Preparation of amorphous Bi-Fe-O series semiconductor and its crystallization behavior and photocatalytic activity[J]. JOURNAL OF ALLOYS AND COMPOUNDS,2024,175658.

[16] Wang Wei, Wei Ruibo, Zhu Qinghan, et al. Wang Haiwang. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING,2024,12(5): 113783.(一区)

[17] Wang Wei, Qiu Ruishan, Li Chenqi, et al. Wang Haiwang*, Qi Jian. Advancing catalytic oxidation of lean methane over cobalt-manganese oxide via a phase-engineered amorphous/crystalline interface[J]. CHEMICAL COMMUNICATIONS, 2024, 60(67): 8896-8899(一区,ESI高被引/热点论文)

[18] Guo Zishuang, Wang Zeyi, Wang Haiwang*, et al. Lattice Distortion Induced Ta-doped BaTiO₃ for Efficient Photocatalytic Water Splitting for Hydrogen Production[J], 2024,9(28): 202304550.

[19] Fu ZiMing, Zhen ErFei, Li Haoran, et al. Wang Haiwang*, Qi Jian. Boosting mechanical properties of carbon fibers by gas-liquid dual-effect approach[J]. MATERIALS CHEMISTRY AND PHYSICS,2024, 325:129735.

[20] Zhang Yuxuan, Wei Ruibo, Yang Lin, et al. Wang Haiwang*, Qi Jian. In Situ Growth of Mn-Co₃O₄ on Mesoporous ZSM-5 Zeolite for Boosting Lean Methane Catalytic Oxidation[J]. CATALYSTS, 2024,14(7):397.

[21] Guo Li, Ji Cheng, Wang Haiwang*, et al. JOURNAL OF COLLOID AND INTERFACE SCIENCE,2024,672: 497-511.(一区)

[22] Wang Wei, Fu Ziming, Yang Ke, et al. Wang Haiwang*, Qi Jian. Deep understanding the formation of MnCoOₓ in-situ grown on foam nickel towards efficient lean methane catalytic oxidation[J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2024,694:134145.(一区)

[23] Xie Changxiang, Ma Yuan, Guo Zishuang, et al. Wang Haiwang*. Preparation of Ag-doped SrTiO₃ by Gel-assisted solid state method: Microstructure evolution and photocatalytic performance[J]. MATERIALS LETTERS,360:135930.

[24] Qiu Ruishan, Wang Haiwang*, et al. Advancement of modification engineering in lean methane combustion catalysts based on defect chemistry[J]. Catal. Sci. Technol., 2023,13:2566-2584.(ESI高被引、热点论文)

[25] Qiu Ruishan, Yan Kong, Wei Wang, et al. Haiwang Wang*.The high activity of Co-Mn-based solid solution catalysts for lean methane combustion[J]. Journal of Alloys and Compounds,2023,952:169973.

[26] Yang Lin, Zhu Qinghan, Yang Ke, et al. Wang Haiwang*. A Review on the Application of Cobalt-Based Nanomaterials in Supercapacitors[J]. NANOMATERIALS,2022,12(22):4065.

[27] Chen Hongfeng, Wang Wei, Yang Lin, et al. Wang Haiwang*. A Review of Cobalt-Containing Nanomaterials, Carbon Nanomaterials and Their Composites in Preparation Methods and Application[J],2022,12(12):2042.

[28] Fu Weijie, Zhao Youhai, Wang Haiwang*, et al. Study on preparation, photocatalytic performance and degradation mechanism of polymeric carbon nitride/Pt/nano-spherical MoS₂ composite[J]. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS,2022,166: 110700.

[29] Xiong Xinyu, Jin Yaran, Wang Haiwang*, et al. Study on the hydrogen production properties and electron transfer mechanism of CdS/WO₃ composite photocatalyst[J]. MATERIALS CHEMISTRY AND PHYSICS,2022,281:125824.

[30] Zhengjie Wu, Youhai Zhao, Xiong Chen, et al. Wang Haiwang*, et al. Preparation of polymeric carbon nitride/TiO₂ heterostructure with NH4Cl as template: Structural and photocatalytic studies[J]. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS,2022,164: 110629.

[31] Zhengjie Wu, Youhai Zhao, Lijie Mi, et al. Wang Haiwang*. Preparation of g-C₃N₄/TiO₂ by template method and its photocatalytic performance[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 624: 126756.

[32] Kefan Liu, Lijie Mi, Wang Haiwang*, et al. Preparation of Ba₁₋ₓSrₓTiO₃ by the sol-gel assisted solid phase method: Study on its formation mechanism and photocatalytic hydrogen production performance[J]. Ceramics International, 2021,47: 22055-22064.(一区)

[33] Mi Lijie, Zhang Qiankang, Wang Haiwang*, et al. Synthesis of BaTiO₃ nanoparticles by sol-gel assisted solid phase method and its formation mechanism and photocatalytic activity[J]. CERAMICS INTERNATIONAL, 2020, 46(8): 10619-10633.(一区)

[34] Chao Li, Wang Haiwang*, Wei Xinfang, et al. Design of SiO₂-TiO₂-P(AM-DMC) cationic composite flocculant and optimization of the flocculation process using response surface methodology[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2020, 1-14.

[35] Ji Cheng, Wei Xinfang, Wang Haiwang*, et al. A kaolinite-based design of kaolin/TiO₂-PAM composite flocculant and the application of the oil sand tailings flocculant[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2019.

[36] Wang Haiwang*, Chao Li, Wei Xinfang, et al. Design of SiO₂-TiO₂-PAM composite flocculant with self-degrading characteristics and optimization of the flocculation process using a combination of central composite design and response surface methodology[J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2019,583:123982.

[37] Gao Dekuan, Wei Xinfang, Zhang Yukai, et al. Wang Haiwang*, et al. Preparation of TiO₂-P(AM-AA) organic-inorganic composite water-retaining agent based on photocatalytic surface-initiated polymerization[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2019.

[38] Wang Haiwang*, Wang Guanqi, Zhang Yukai, et al. Preparation of RGO/TiO₂/Ag Aerogel and Its Photodegradation Performance in Gas Phase Formaldehyde[J]. SCIENTIFIC REPORTS, 2019, 9(16314):(一区)

[39] Wang Haiwang*, Zhang Yukai, Gao Dekuan, et al. Research on self-degradation of RGO/TiO₂-P(AM-DAC) organic-inorganic composite flocculant prepared by surface initiated polymerization and its flocculation mechanism of oil sand tailings[J]. EUROPEAN POLYMER JOURNAL, 2019, 120.(一区)

[40] Wang Haiwang*, Li Jinlong, Liu Wenge, et al. Enhancing catalytic CH₄ oxidation over Co₃O₄/SiO₂ core-shell catalyst by substituting Co²⁺ with Mn²⁺[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2019.

[41] Ma Yuan, Wu Zhengjie, Wang Haiwang, Wang Guanqi*, et al. Synthesis of nanocrystalline strontium titanate by a sol-gel assisted solid phase method and its formation mechanism and photocatalytic activity[J]. CRYSTENGCOMM, 2019, 21(26): 3982-3992.

[42] Wang Haiwang*, Wang Guanqi, Zhang Yukai, et al. Preparation of RGO/TiO₂ photocatalyst and the mechanism of its hydrothermal process[J]. JOURNAL OF THE CHINESE CHEMICAL SOCIETY, 2018, 66(7): 734-739.

[43] Wang Haiwang*, Chao Li, Wei Xinfang, et al. Design and preparation of flocculant with self-degrading characteristics for dewatering of oil sand tailings[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2019.

[44] Wang Haiwang*, Li Jinlong, Liu Wenge, et al. Preparation of novel carbon spheres based on molecular design and adsorption/degradation of methyl orange[J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2019.

[45] Wang Haiwang*, Zhang Yukai, Wang Guanqi, et al. A molecular-based design of RGO/TiO₂-PAM composite flocculant with photocatalytic self-degrading characteristics and the application of the oil sand tailings flocculant[J]. ACS Sustainable Chemistry & Engineering, 2019, 7(7): 6758-6768.(一区)

[46] Wei Xinfang, Wang Haiwang*, Bian Jiali, et al. Synthesis and Characterization of a New Organic–Inorganic Hybrid Hydrogel by Using SiO₂ Nanoparticles as an Initiator[J]. Journal of the Chinese Chemical Society, 2018, 65(2): 225-230.

[47] Wang Haiwang*, Wang Xin, Wang Bingzhu, et al. Synthesis of Poly(2-Hydroxyethyl Methacrylate)-based Hybrid Nanoparticles via Visible-Light-Initiated Radical Polymerization[J]. Journal of the Chinese Chemical Society, 2017, 64(6): 612-617.

[48] Wei Xinfang, Tao Junshi, Li Mingzhi, et al. Wang Haiwang*, et al. Polyacrylamide-based inorganic hybrid flocculants with self-degradable property[J]. Materials Chemistry and Physics, 2017, 192: 72-77.

[49] Haiwang Wang*, Tianbo Zhao*, Xinfang Wei, et al. Easy preparation of carbon sheets with controlled microstructures from sucrose/layered superabsorbent polymer hydrogels[J]. Carbon, 2011, 49: 357-363.

[50] Haiwang Wang*, Tianbo Zhao*, Guozhong Lu, et al. Novel Micro∕nanostructures from a Double Network Gel[J]. Journal of the Chinese Chemical Society, 2011, 58(3): 282-286.

[51] Shuai Zhang, Tianbo Zhao*, Haiwang Wang*, et al. Comparison of Spe-Td-Gc-Fid with Uplc-Pda and Gc-Ms Methods for Analysis of Benzene, Toluene and Xylene Isomers in Solid-Liquid Mixing Paints[J]. Chromatographia, 2011, 74: 163-169.

[52] Haiwang Wang*, Ying Wang, Huiying Zhou, et al. An easy preparation of bulk nanostructured carbon materials[J]. Materials Chemistry and Physics, 2012, 135: 668-675.

[53] Haiwang Wang*, Ying Zhu, Xinfang Wei, et al. New protocol for synthesis of new nanomaterials with continuous 3D networks[J]. Journal of Nanoparticle Research, 2014, 16: 2409.

[54] Haiwang Wang*, Yifei Xing, Yue Li, et al. A unique surface-initiated property of nanoparticles and application for the synthesis of hybrid organic–inorganic nanoparticles[J]. Chemical Communications, 2014, 50: 5864-5866.

[55] Haiwang Wang*, et al. Mechanical properties of phenolic foams modified by organic-inorganic nanocomposite[C]. The 2013 2nd International Conference on Applied Mechanics and Materials, Zhuhai, 2013: 604-609.

[56] Haiwang Wang*, et al. An easy preparation of hybrid SiO₂@Poly acrylic acid Nanoparticles[C]. The 2013 2nd International Conference on Sensors, Measurement and Intelligent Materials, Guangzhou, 2013: 1340-1343.

[57] Haiwang Wang*, et al. Preparation of a Net with the function of sand-resistance and sand-fixation[C]. The 2013 International Conference on Materials for Renewable Energy & Environment, Nanjing, 2013: 1192-1195.

[58] Shuai Zhang, Tianbo Zhao, Xin Xu, Haiwang Wang*, et al. Determination of BTEX Compounds in Solid–Liquid Mixing Paint Using the Combination of Solid Phase Extraction,Thermal Desorption and GC-FID[J]. Chromatographia, 2010, 71: 1131-1135.

[59] Jian Qi, Tianbo Zhao, Xin Xu, et al. Haiwang Wang*. Study of cracking of large molecules over a novel mesoporous beta[J]. Catalysis Communications, 2009, 10: 1523–1528.

[60] Jian Qi, Tianbo Zhao, Fengyan Li, et al. Haiwang Wang*. Study of cracking of large molecules over a new type meso-ZSM-5 composite zeolite[J]. J Porous Mater, 2010, 17(2): 177-184.

代表性授权国家发明专利(标注成果转化)

Z-1一种节能环保型热熔标线涂料的制备方法(2016授权,2018年成果转化)

Z-2一种水溶性纳米二氧化钛的制备方法(2021授权)

Z-3制备聚甲基丙烯酸羟乙酯-二氧化钛纳米杂化材料的方法(2021授权)

Z-4一种可降解聚丙烯酰胺驱油剂及其制备方法(2018授权)

Z-5一种改性酚醛泡沫保温板的制备方法(2017授权)

Z-6一种常温铁氧体循环处理重金属污水的方法及装置(2017授权)

Z-7一种大孔炭材料的制备方法及其产品(2016授权)

Z-8一种有机-无机材料复合改性水泥的制备方法(2016授权)

Z-9一种聚丙烯酰胺的制备方法(2015授权)

Z-10一种耐盐性好、低吸水倍率农业抗旱型保水剂的制备方法(2015授权)

Z-11一种治沙砖的制作方法及其治沙方法(2015授权)

Z-12一种改性酚醛保温泡沫材料的制备方法(2015授权)

Z-13一种化学固沙剂的制备方法(2017授权)

Z-14一种铁酸铋基复合纳米纤维的制备方法(2022授权)

Z-15一种钛酸钡基全固态超级电容器的制备方法(2021授权)

Z-16一种纳米级钛酸锶钡粉体的制备方法(2021授权)

Z-17一种RGO/TiO₂/Ag气凝胶型光催化剂的制备方法和应用(2022授权,2023年成果转化)

Z-18一种纳米级钛酸锶粉末的制备方法(2021授权)

Z-19一种硅溶胶改性纤维素基粘结剂、环保储水型固沙板及其制备方法(2021授权,2023年成果转化)

Z-20一种石墨烯/二氧化钛/聚丙烯酰胺复合自降解絮凝剂的制备方法(2020授权,2023年成果转化)

Z-21一种无机纳米颗粒@PAM杂化材料的制备方法(2019授权)

Z-22一种互穿网络结构水凝胶的制备方法(2019授权)

Z-23一种高强度复合水凝胶及其制备方法(2019授权)

Z-24一种纳米二氧化钛光催化降解剂及其制备方法(2019授权)

Z-25一种石墨烯/酚醛树脂导热复合材料及其制备方法(2019授权,2023年成果转化)

Z-26一种节能环保型隔热涂料及其制备方法(2019授权)

Z-27一种涂料用高分散性TiO₂填料及其制备方法(2020授权)

Z-28一种快干型涂料(2019授权)

Z-29一种纯相铁酸铋粉体的制备方法(2018授权)

主持/参与的代表性科研项目

1. 国家自然科学基金项目:微纳结构尺寸效应下高强度纳米杂化水凝胶的表面引发聚合机制、有机-无机界面结构调控与机械强度研究(项目负责人)

2. 国家自然科学基金项目:Bi/Ga共掺杂La-Al-O系非晶的无容器法制备及其性能研究(核心参与)

3. 国家自然科学基金项目:钙钛矿ABO3型高熵陶瓷的组分设计和多尺度结构构筑(核心参与)

4. 河北省自然科学基金项目:基于表面引发聚合技术的新型纳米杂化水凝胶的设计、制备及其机理研究(项目负责人)

5. 省部级科研项目:新型有机-无机纳米杂化材料的制备机制及其应用的研究(项目负责人)

6. 省部级科研项目:新型三维网状半导体纳米材料的形成机理及其应用的研究(项目负责人)

7. 省部级科研项目:低导热、高闭孔酚醛泡沫研究(项目负责人)

8. 省部级科研项目:以高吸水性树脂为模板的新型纳米材料的制备及其性能的研究(项目负责人)

9. 省部级科研项目:基于石墨烯表面有机化新技术设计、制备新型聚合物基高介电纳米杂化材料的研究(项目负责人)

10. 省部级科研项目:基于纳米颗粒表面引发有机单体聚合的机制及其性能的研究(项目负责人)

11. 校级科研项目:一种新型高强度PAM@Fe3O4纳米杂化水凝胶的设计及其制备的研究(项目负责人)

12. 校级科研项目:新型高介电纳米杂化材料的设计、制备及其反应机制的研究(项目负责人)

团队指导学生获代表性科技竞赛奖项

国家级奖项

1. 2024年 第十九届“挑战杯”全国大学生课外学术科技作品竞赛“揭榜挂帅”专项 全国特等奖(七星级,学校赛事历史突破)

2. 2022年 第十五届大学生创新创业年会“优秀学术论文奖”全国一等奖(六星级,学校本科生学术论文赛道首次获奖)

3. 2017年 第三届全国大学生“互联网+”创新创业大赛 国家银奖(七星级,学校赛事历史突破)

4. 第九届全国大学生节能减排社会实践与科技竞赛全国一等奖

5. 第十五届“挑战杯”全国大学生课外学术科技作品竞赛 全国二等奖

6. 第十六届全国大学生节能减排社会实践与科技竞赛国家二等奖

7. 第四届全国大学生高分子材料创新创业大赛国家二等奖

8. 第十一届全国环境友好科技竞赛国家二等奖

9. 第十二届“挑战杯”中国大学生创业计划竞赛 国家铜奖

10. “创青春”全国大学生创新创业大赛 国家铜奖

11. 第三届“创青春”中国青年互联网创业大赛 国家铜奖

12. 2015年“中国创翼”青年创业创新大赛“银翼奖”

13. 第二届“中国创翼”青年创新创业大赛 国家银翼奖

14. 全国大学生“生态创想,绿色行动”环保大赛 全国一等奖/二等奖

(其余国家级二、三等奖及优秀奖若干)

省级一等奖/特等奖

1. “挑战杯”河北省大学生课外学术科技作品竞赛 特等奖(多次)

2. “创青春”河北省大学生创新创业大赛 河北省特等奖

3. 第二届/第五届河北省大学生创新创业年会 河北省特等奖

4. 河北省“互联网+”创新创业大赛 河北省金奖

5. “挑战杯”河北省大学生学术科技作品竞赛 河北省一等奖(多次)

6. “创青春”河北省大学生创业大赛 河北省一等奖

(其余省级二等奖及以上奖项若干)

主讲课程

本科生课程

《高分子化学》(校级一流课程)、《创业基础》(河北省普通高校就业创业指导优质课程)

研究生课程

《材料物理与化学》

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