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副教授,博士, 硕士研究生导师,全国能源材料与器件专家委员会委员,中国化工学会工业水处理专业委员会专家,国际仿生工程学会会员、中国微米纳米技术学会高级会员,中国海洋学会海水淡化与水再利用分会会员、中国化工学会会员,中国化学学会会员,教育部论文评审专家、辽宁省科技厅计划项目评审专家、辽宁省建筑教育协会专家,担任国际期刊Responsive Materials及Exploration期刊的青年编委及ACS Applied Materials and Interfaces、Carbohydrate Polymers、Journal of Bionic Engineering、Journal of Materials Engineering and Performance、河北省科学院学报、水处理技术等三十余个国外期刊审稿人,辽宁省一流课程《防水材料》负责人,入选沈阳市“引博人才工程”、“沈阳市高层次人才”、“辽宁省人社厅全日制博士高级人才奖励计划”,荣获Wiley威立中国开放科学高贡献作者、沈阳建筑大学优秀教师、沈阳建筑大学先进工作者、优秀班主任、双师双能教师、本科毕设优秀指导教师等称号,在国内外期刊发表学术论文60余篇,其中在International Journal of Biological Macromolecules、Applied Surface Science、Microchemical Journal、European Polymer Journal、Chemical Engineering Science等国际重要期刊发表SCI/EI论文40余篇,主持或参与国家级及省级项目30余项,指导的研究生多人获得国家奖学金、优秀研究生、学术之星等荣誉。(本课题组可为学生提供民主、公平、畅所欲言的学术环境,并提供大连理工大学、中科院上海应用物理所等院校联合培养机会)。
2006.9-2010.7 中北大学 高分子材料与工程 本科
2010.9-2017.12 大连理工大学 精细化工国家重点实验室,高分子材料专业 硕博连读,师从张守海教授和蹇锡高院士
2018.7-2022.12 沈阳建筑大学 讲师,硕士研究生导师
2022.12-至今 沈阳建筑大学 副教授,硕士研究生导师
全国能源材料与器件专家委员会委员,国际仿生工程学会会员、中国微米纳米技术学会高级会员,中国化工学会会员,中国化学学会会员,中国海洋学会海水淡化与水再利用分会会员,沈阳市高层次人才,教育部论文评审专家、辽宁省建筑教育协会专家、ACS Applied Materials and Interfaces、Journal of Materials Engineering and Performance、Carbohydrate Polymers 、Journal of Polymer Research, Applied Surface Science等二十余个国外期刊审稿人。
(1) 辽宁省教育厅,国家项目培育基金,LJ212410153005,基于仿生多相限域的柔性智能感知材料的调控制备及严寒环境下健康监测关键技术研究,2024.9至2026.9
(2) 辽宁省教育厅, 基本科研项目(青年项目), LJKQZ2021060, 贻贝仿生启示下“多层夹心式”绿色高效染料废水分离膜的构筑及机理研究, 2021-07 至 2024-06
(3) 辽宁省科技厅, 博士启动基金, 2020-BS-158, 基于碳纳米管/β-环糊精的复合正渗透膜制备及性能研究, 2020-05 至 2022-04
(4) 横向项目, 22-08-131, 光固化高弹耐候型聚脲防水涂料的开发及应用技术研究, 2022-09 至 2024-09
(5) 横向项目, 22-08-104, 环境友好自然修复建筑涂料关键技术研究,2022-07 至 2024-07
(6)辽宁省科技厅, 重点面上项目, 2023JH2/101600057, TiO2电子传输层的界面调控对钙钛矿太阳电池光伏性能影响的研究, 2023-01 至 2026-12
(7) 国家自然科学基金委员会, 面上项目, 52278453, 地聚合物沥青温拌剂的类沸石结构演变及温拌机理, 2023-01 至 2026-12
(8) 辽宁省委人才办, “兴辽英才计划”科技项目, XLYC2002005, 先进材料制备与性能研究, 2021-01至 2023-12
(9) 辽宁省教育厅, 面上项目, lnfw202014, 石墨烯改性水性聚氨酯防腐涂料的制备及应用研究, 2020-08 至 2023-07
(10) 辽宁省教育厅, 基本科研项目(面上项目), LJKZ0593, 低温相变储能材料在石膏基自流平砂浆中的应用关键技术研究, 2021-07 至 2023-06
(11) 辽宁省教育厅,基本科研项目(青年基金),LJ212410153014,新型聚合物基SiO2复合气凝胶隔热材料的制备及性能研究,2024.9-2027.9
(12) 辽宁省建设科学研究院有限责任公司, 横向项目, jbgs2203, 丙烯酸盐灌浆材料研发与应用, 2022-06至 2024-12
(13) 辽宁省科技厅, 辽宁省2022年第二批“揭榜挂帅”科技项目, JBGS2203, 丙烯酸盐灌浆材料研发与应用, 2022-06 至 2024-12
(14) 辽宁女娲防水建筑工程有限公司, 横向项目, 23-08-240, 新型海洋防污涂料的制备, 2023-09 至2024-09
(15) 辽宁女娲防水建筑工程有限公司, 横向项目, 23-08-239, 聚合物水泥基快速修复材料的研制, 2023-09 至 2024-09
(16) 辽宁女娲防水建筑工程有限公司, 横向项目, 23-08-238, 环氧树脂改性ACL系防水材料的研究, 2023-09 至 2024-09
(17) 辽宁女娲防水建材科技集团有限公司, 横向项目, 22-08-112, 纳米改性聚合物基高强防护涂料的研制, 2022-08 至 2023-08
(18) 沈阳市金海韵涂料有限公司, 技术开发, 21-08-06, 喷涂型双组分聚氨酯地坪涂料, 2020-01 至2022-01
(19) 辽宁省建设科学研究院有限公司, 技术开发, 20-08-247, 丙烯酸盐基防水灌浆材料的开发应用,2020-05 至 2021-12
(20) 沈阳市城乡建设委员会, 市级, SYJD2019001, 装配式建筑接缝密封胶施工应用技术规程, 2019-09至 2020-04
(21) 沈阳市城乡建设委员会, 市级, 2018009, 透气型保温隔热涂料的施工应用技术方案, 2018-10 至2019-12
(22) 辽宁省教育厅,基本科研项目(一般项目),JYTMS20231574,基于氧化还原引发体系丙烯酸镁注浆料的固化调控及耐久性研究,2023-09-01-2025.8.31
(23) 辽宁女娲防水建材科技集团有限公司, 横向项目, 24-08-133, 纳米改性聚脲高强防护材料的研制, 2024-03 至 2025-03
(24) 先进橡胶材料教育部重点实验室基金项目,XJCL2025009,柔性硅橡胶基智能感知材料的多相限域构筑与性能调控机制研究,2025-01-2026.12
(25)辽宁省科技计划联合计划项目,1731657592719,基于schiff碱交联的生物基复合气凝胶隔热材料的制备及结构性能调控,2025.1.1-2026.12.31
(26) 精细化工国家重点实验室开放课题,KF2412,生物基复合气凝胶隔热材料的制备及性能研究,2024.12-2027.03
[1] Zhenchun Li, Peng Liu*, Shaowei Chen, et al. Polyvinyl alcohol/chitosan based nanocomposite organohydrogel flexible wearable strain sensors for sports monitoring and underwater communication rescue. International Journal of Biological Macromolecules, 258 (2024) 129054.[2] Zhenchun Li, Peng Liu*, Shaowei Chen, et al. Highly elastic, frostresistant and antimicrobial flexible sensor inspired by ramen noodles for human motion detection and deep learning of handwritten content. Microchemical Journal 196 (2024) 109614.
[3] Zhenchun Li, Peng Liu*, Shaowei Chen, et al. High strength, anti-freeze, transparent and recyclable composite organohydrogel for flexible strain sensor. Reactive and Functional Polymers 190 (2023) 105644.
[4] Zhenchun Li, Peng Liu*, S. Chen, et al. High-Strength, Freeze-Resistant, Recyclable, and Biodegradable Polyvinyl Alcohol/Glycol /Wheat Protein Complex Organohydrogel for Wearable Sensing Devices. Biomacromolecules 2023, 24, 8, 3557–3567.
[5] Zhenchun Li, Peng Liu*, Shaowei Chen, et al. Bioinspired marine antifouling coatings: Antifouling mechanisms, design strategies and application feasibility studies. European Polymer Journal, 2023, 190:111997.
[6] Zhenchun Li, Peng Liu*, Xiangyu Li, et al. Design strategies for environmentally friendly polyvinyl alcohol hydrogel sensors : Research progress and Perspectives, Materials Today Communications,39 (2024) 109401.
[7] Feihong Li, Peng Liu*, Xiangyu Li, et al.High tough, self-adhesive, conductive double network hydrogel for flexible strain sensors, Journal Polymer Science. 2024; 62(18)4165-4176.
[8] Enyuan Cui, Peng Liu*, Jiaozhu Yu, et al. Highly Tough, Freeze Resistant, Sensitive, and Recyclable Starch based Multifunctional Hydrogel Flexible Wearable Sensor for Human Motion Monitoring,Journal of Polymers and the Environment, 32(2024)5344-5359.
[9] Peng Liu*, Yuanyuan Bi, Shaowei Chen, et al. Preparation and Performance of Organically Modified Montmorillonite Composite Separation Membrane,Journal of Wuhan University of Technology-Mater. Sci. Ed. 39, 1100–1107 (2024)
[10] LIU Peng*, MAO Junpeng, YU Yunwu, et al. Preparation of modified composite nanofiltration membrane synergistically using carboxylic multi-walled carbon nanotube and β-cyclodextrin, Journal of Wuhan University of Technology-Mater. Sci. Ed.2024
[11] Shaowei Chen, Peng Liu*, Zhenchun Li, et al. Preparation and Performance of Composite Nanofiltration Membrane Modified by Mussel Coating. Journal of Polymers and the Environment, 2023, 23:2928.
[12] Shaowei Chen, Peng Liu*, Zhenchun Li, et al. Biomimetic mussel technology for membrane material modification: Adhesion mechanism and design strategy. J. Polym. Sci., 2023, 61(22):2815-2827.
[13] Y. Liu, Y. Lu, Z. Fan, Y. Gu, Y. Wan, Y. Yu, Peng Liu*, Preparation and performance study of organosilicon fluorine modified acrylate emulsion, Journal of Dispersion Science and Technology, 2024, 1-9.
[14] Shaowei Chen, Peng Liu*, Zhenchun Li, et al. Preparation and performance of “three-layer sandwich” composite loose nanofiltration membrane based on mussel bionic technology". Journal of Polymer Engineering, 2023, 43(7): 613-626.
[15] Y. Gu, Y. Liu, Z. Fan, J. Gui, Peng Liu*, H. Wang. Influence of βnucleating Compound Agents on the Mechanical Properties and Crystallization Behavior of Polypropylene Random Copolymer. J. Wuhan Univ. Technol.-Mat. Sci. Edit. 38, 237–243 (2023).
[16] Yunxue Liu, Xiaotian Kang, Zhaorong Fan, Peng Liu*. Preparation and performance of graphene oxide modified polyurethane thermal conductive insulating adhesive, J. Wuhan Univ. Technol.-Mat. Sci. Edit. 2022, 37(5):1025-1031.
[17] P Liu*, S Zhang, R Han, et al. Effect of Additives on the Performance of PPBES Composite Forward Osmosis Hollow Fiber Membranes. ACS Omega, 2020, 5 (36): 23148–23156.
[18] P Liu*, W Niu, L Wang, et al. Influence of casting solution formula on the performance of novel polyacrylonitrile/polysulfone blend ultrafiltration membrane. Journal of Polymer Research, 2020, 27(8): 213.
[19] P Liu*, J. Yu, Influence of modifying interfacial polymerization compositions on the performance of composite forward osmosis hollow fiber membranes, Journal of Polymer Research, 2019, 26(3):60-70.
[20] P Liu*, S. Zhang, Y. Wang, Y. Yu, X. Gao, Preparation and characterization of thermally stable copoly(phthalazinone biphenyl ether sulfone) hollow fiber ultrafiltration membranes, Applied Surface Science, 2015. 4.30, 335: 189~197.
[21] S. Zhang, P. Liu, Y. Chen, J. Jin, L. Hu, X. Gao, Preparation of thermally stable composite forward osmosis hollow fiber membranes based on copoly(phthalazinone biphenyl ether sulfone) substrates, Chemical Engineering Science, 2017, 166: 91~100.
[22] Y Yu*, J Wang, Y Wang, W Pan, C Liu, P Liu. Polyethyleneimine-functionalized phenolphthalein-based cardo poly(ether ether ketone) membrane for CO2 Separation., Journal of Industrial and Engineering Chemistry, 83 (2022):20-28.
[23] Y Yu*, Peng Lin, C. Liu, Peng Liu. Preparation and performance characterization of novel PVA blended with fluorinated polyimide membrane for gas separation. High Performance Polymers, 2021, 33(4):394-404.
[24] Y. Yu*, Y. Wu Y, C. Xie, Peng Liu. High-flux, antifouling and highly hydrophilic tight UF membranes based on crosslinked PEEKWC/PEI containing positively charged water channel for dyes removal. Chemical Engineering Research & Design 2022.[25] Y. Yu*, C. Xie, Y. Wu, Peng Liu, et al. Preparation of a PVA/Chitosan/Glass Fiber Composite Membrane and the Performance in CO2 Separation. Membranes. 2022, 13(1):36.
[26] Y. Yu*, Y. Wu, Z. Li, Y. Wang, Peng Liu, et al. Separation performance enhancement of PEEKWC/PEI cross-linked
ultrafiltration membranes by poly(ethylene glycol) and polyvinylpyrrolidone as polymeric additives, Journal of Environmental Chemical Engineering 12 (2024) 111678.
[27]Yunwu Yu , Yan Wu , Yong Yuan , Yan Wang , Changwei Xu , Yanfeng Fang , Yaxin Gu , Peng Liu, TiO2 nanoparticle embedded PEEKWC/PEI cross-linked ultrafiltration membrane: Improvement in flux and anti-fouling properties, Chemical Engineering Research and Design 202 (2024) 480–488.
[28] Peng Liu*, Feihong Li, Yaxin Gu, et al. Stretchable, Self-Adhesive, and Sensitive Polyacrylamide Polyvinyl Alcohol Double Network Hydrogels for Flexible Wearable, Materials Today Communications, 41 (2024) 110804
[29]Peng Liu*, Yuanyuan Bi, Yaxin Gu, et al. Synergistic Optimization Strategies for SA-PVA Hydrogel Nanofiltration Membrane Performance by MWCNTs and TiO2.Journal of Polymers and the Environment, 2024.
[30]刘鹏*,刘晓婷,李振春,陈绍崴,毕媛媛.贻贝仿生改性聚偏氟乙烯复合纳滤膜的制备及性能研究. 沈阳建筑大学学报(自然科学版),2024.
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