
2020/01-至今, 上海工程技术大学, 化学化工学院高分子材料与工程系,副教授
2014/06-2019/12, 上海工程技术大学, 化学化工学院高分子材料与工程系, 讲师
2012/01-2014/06, 上海交通大学, 生物医学工程学院, 博士后, 合作导师:古宏晨
2009/10-2011/03, 美国麻省大学,化学系,联合培养博士, 导师:Paul L. Dubin; Vincent M. Rotello
2006/09–2011/11, 华东理工大学, 化工学院, 博士,导师:郭旭虹
2002/09–2006/07, 华东理工大学, 材料科学与工程学院, 学士, 导师:徐世爱
企业技术开发横向项目,“海水管道防腐涂层的配方设计及工艺优化((24)HG-000)“,2024-2025
企业技术开发横向项目,“汽车漆保护膜配方设计与制备技术研究((24)HG-024)“,2024-2025
企业技术开发横向项目,“低敏、长效抗抑菌手卫生消毒制剂研究与开发((24)HG-007)”,2024-2025
海洋涂料国家重点实验室开放课题,“颜料/树脂一体化超稳定水性防污抗菌颗粒的结构设计与制备研究(GZS-002-2020)”,2020-2022
新疆生产建设兵团材料化工工程技术研究中心开放课题,“高荧光强度纳米聚合物刷的制备及其离子检测研究(2020BTRC001)”,2020-2022
国家自然科学基金青年项目,“RAFT聚合法制备两性聚电解质刷及其对蛋白的吸附分离研究(21504052)”,2016-2018
上海市青年科技英才扬帆计划,“新型阳离子球形聚电解质刷的制备及其与蛋白质的选择性吸附研究(15YF1404800)”,2015-2017
企业技术开发横向项目,“功能型乳胶的配方设计与性能优化((18)HG-001)”,2018-2020
企业技术开发横向项目,“免疫侧向层析用超敏荧光微球的制备((17)HG-001)”,2017-2018
上海高校教师产学研践习计划,2017-2018
上海工程技术大学展翅人才计划,2016-2018
上海市教委青培项目(优秀),“两性离子聚合物刷对蛋白质的可控吸附研究(ZZGCD15032)”,2015-2016
中国博士后基金面上项目,“磁性球形聚电解质刷的合成与表征(12Z102060005)”,2012-2014
论文
2024(3篇)
[59] Jiang Sihong; Wang Jihu; Wen Shaoguo; Chen Kaimin; Zhou Jianlong; Wang Haopeng; Deng Xuying. The Effect of Expanded Vermiculite on the Fire Resistance of Waterborne Acrylic Coatings. Polymers 2024, 16(16): 2302.
[58] Chang Yue; Chen Kaimin*; Li, Ziwei; Zhang Xueke; Xu, Chenming; Wang Jihu; Wen Shaoguo. Prussian blue encapsulated with brush-like polyorganosiloxane nanospheres with tunable functionality. Coatings 2024, 14(6): 677.
[57] Zhang Xueke; Chen Kaimin*; Li, Ziwei; Zhang, Qianqian; Xu, Chenming; Chang Yue; Wen Shaoguo. Preparation of crosslinkable cationic polyacrylate latex and its film properties . Journal of Coatings Technology and Research 2024, 21(1), 341-354.
2023(3篇)
[56] Zhou Yu; Chen Kaimin*; Liu Li; Wen Shaoguo; Gui Taijiang*. The design and preparation of antibacterial polymer brushes with phthalocyanine pigments. Coatings 2023, 13(6): 1114.
[55] Yu Liang; Li Ziwei; Hua Chen; Chen Kaimin*; Guo Xuhong*. Temperature responsive diblock polymer brushes as nanoreactors for silver nanoparticles catalysis. Polymers 2023, 15(8): 1932.
[54] Zhang Qianqian; Zhang Xueke; Yan Nana; Chen Kaimin*. Pickering emulsion stabilized by temperature-sensitive PS@PNIPA nanoparticles as microcontainers. Polymer 2023, 268,125710.
2022(7篇)
[53] Zhao Zihao; Chen Kaimin; Wen Shaoguo*; Wang Jihu; Xu Jinglu; Wang Song; Li Weiping; Song Jia. Preparation of Zn5Mo2O11·5H2O@sulfonated graphene by template method and its anticorrosion mechanism in polyurethane coatings. Coatings 2022, 12(11): 1634.
[52] Yan Nana; Wang Qiaoling; Chen Kaimin*; Qu Yi; Wen Shaoguo. Comparison of aggregation-caused quenching and aggregation-induced emission from polymer-functionalized polystyrene nanoparticles for Cu2+ and Fe3+ detection. Chemical Papers 2022, 76(11): 6879–6889.
[51] Wang Jing; Wang Jihu*; Wang Song; Wen Shaoguo; Chen Kaimin; Xie Chen; Yuan Chunping. Study on the synthesis and properties of waterborne polyurea modified by epoxy resin. Polymers 2022, 14(11): 2283.
[50] Liu Li; Zhou Yu; Chen Kaimin*; Gan Wenjun; Wen Shaoguo; Wang Bo*. Structural design and preparation of pigment/resin integrated ultra-stable antibacterial composite particles. Dyes and Pigments 2022, 201, 110242.
[49] Hua Chen; Li Ziwei; Chen Kaimin*: Sun Liang; Yu Liang; Guo Xuhong*. Tunable protein adsorption by zwitterionic spherical poly(CBAA) brushes prepared via photo-emulsion polymerization. Industrial & Enginering Chemistry Research 2022, 61(12): 4460-4468.
[48] Li Ziwei; Chen Kaimin*. Functional spherical polymer brushes: An Overview. Polymer Science: Peer Review Journal 2022, 2(5), 550.
[47] Li Min; Li Lingshan; Qiu Zhiqiang; Chen Kaimin*; Xu Yisheng; Guo Xuhong; Wang Jie*. Catalytic activity comparison of gold nanoparticles in annealed and quenched spherical polyelectrolyte brushes. Chemistry Letters 2022, 51(3): 284-287.
2021(4篇)
[46] Hua Chen; Chen Kaimin*; Guo Xuhong*. Boronic acid-functionalized spherical polymer brushes for efficient and selective enrichment of glycoproteins. Journal of Materials Chemistry B 2021, 9(36), 7557-7565.
[45] Fu Enyu; Chen Kaimin*; Wang Qiaoling; Zhang Ying; Yan Nana; Liu Li. Formation and stabilization of Pickering emulsions using salt-sensitive core–shell cationic nanoparticles. Journal of Materials Science 2021, 56, 14019-14034.
[44] Wang Shulong; Li Weizhen; Jin Xuhong; Wu Jiating; Chen Kaimin; Gan Wenjun. Facile fabrication of three-dimensional thermal conductive composites with synergistic effect of multidimensional fillers. Journal of Materials Science 2021, 56, 12671-12685.
[43] Zhen Xueqian; Li Weizhen; Wu Jiaming; Jin Xulong; Wu Jiating; Chen Kaimin; Gan Wenjun. Effect of tertiary polysiloxane on the phase separation and properties of epoxy/ PEI blend. Journal of Applied Polymer Science 2021, 138(2): 49672.
2020(5篇)
[42] Wu Jiaming, Li Weizhen*, Zhen Xueqian, Wang Shulong, Chen Kaimin, Gan Wenjun*. Conductive epoxy nanocomposite with self-supporting networks of silver@carbon nanocable sponge and improved properties. Journal of Materials Science - Materials in Electronics 2020, 31, 6488-6496.
[41] Hua Chen, Chen Kaimin*, Wang Zun, Guo Xuhong. Preparation, Stability and film properties of cationic polyacrylate latex particles with various substituents on the nitrogen atom. Progress in Organic Coatings 2020, 143, 105628.
[40] Wang Qiaoling, Chen Kaimin*, Qu Yi, Li Kai, Zhang Ying, Fu Enyu. Hairy fluorescent nanospheres based on polyelectrolyte brush for highly sensitive determination of Cu(II). Polymers 2020, 12(3):577.
[39] Wang Zun, Chen Kaimin*, Hua Chen, Guo Xuhong. Conformation variation and tunable protein adsorption through combination of poly(acrylic acid) and antifouling poly(N-(2-hydroxyethyl) acrylamide) diblock on a particle surface. Polymers 2020, 12(3): 566.
[38] 陈凯敏*,李凯,郭旭虹. 磁性聚合物刷的制备、功能化及其应用. 华东理工大学学报(自然科学版). 2020, 46(5): 579-588.
2019(7篇)
[37] Chen Kaimin*, Wang Siyi, Guo Xuhong. Confinement effect on the aqueous behaviors of free poly(acrylic acid) and poly(acrylic acid) grafted on a nanoparticle surface. Colloid and Polymer Science 2019, 297(9): 1223-1231.
[36] Liu Yuanyuan, Yang Xiaodan, Yue Lansong, Li Weizhen, Gan Wenjun, Chen Kaimin. Selective dispersion of silver nanowires in epoxy/polyetherimide binary composites with enhanced electrical conductivity: a study of curing kinetics and morphology. Polymer Composites 2019. 10.1002/pc.25301
[35] Li Kai, Chen Kaimin*, Wang Qiaoling, Zhang Ying, Gan Wenjun. Synthesis of poly(acrylic acid) coated magnetic nanospheres via a multiple polymerization route. Royal Society Open Science 2019, 6, 190141.
[34] Wang Xue, Yang Yang, Li Weizhen, Chen Kaimin, Gan Wenjun. Selective localization of multi-walled carbon nanotubes in epoxy/polyetherimide system and properties of the conductive composites. Journal of Applied Polymer Science 2019, 136(35): 47911.
[33] Zhang Zhao, Li Weizhen, Wang Xue, Liu Wenming, Chen Kaimin, Gan Wenjun. Low effective content of reduced graphene oxide/silver nanowire hybrids in epoxy composites with enhanced conductive properties. Journal of Materials Science: Materials in Electronics 2019, 30(8): 7384-7392.
[32] Wu Youtong, Wen Shaoguo, Chen Kaimin, Wang Jihu, Wang Guangyu, Sun Kai. Enhanced corrosion resistance of waterborne polyurethane containing sulfonated graphene/zinc phosphate composites. Progress in Organic Coatings 2019, 132: 409-416.
[31] Zhang Ying, Chen Kaimin*, Cao Lan, Li Kai, Wang Qiaoling, Fu Enyu, Guo Xuhong. Stabilization of Pickering emulsions by hairy nanoparticles bearing polyanions. Polymers 2019, 11(5): 816.
2018(4篇)
[30] Cao Lan, Chen Kaimin*, Qin Xue, Zhang Ying, Li Kai, Guo Xuhong. Effect of block sequence on responsive behavior of core-shell diblock polymer brushes. Materials Letters 2018, 223(13): 116-119.
[29] Hu Fenglin, Chen Kaimin, Xu Hong, Gu Hongchen. Design and preparation of bi-functionalized short-chain modified zwitterionic nanoparticles. Acta Biomaterialia 2018, 72(5): 239-247.
[28] Yang Yang, Li Weizhen, Chen Kaimin, Gan Wenjun, Wang Cheng. Epoxy terminated polysiloxane blended with diglycidyl ether of bisphenol-A. 1: Curing behavior and compatibility. Journal of Applied Polymer Science 2018, 135(48): 46891.
[27] Chen Kaimin*, Cao Lan, Zhang Ying, Li Kai, Qin Xue, Guo Xuhong. Conformation study of dual stimuli-responsive core-shell diblock polymer brushes. Polymers 2018, 10(10): 1084.
2017(2篇)
[26] Chen Kaimin, Hu Fenglin, Gu Hongchen, Xu Hong. Tuning of surface protein adsorption by spherical mixed charged silica brushes (MCB) with zwitterionic carboxybetaine component. Journal of Materials Chemistry B 2017, 5(3): 435-443. (cover article)
[25] Qin Xue, Chen Kaimin*, Cao Lan, Zhang Ying, Li Li, Guo Xuhong. Antifouling performance of nano-sized spherical poly(N-hydroxyethyl acrylamide) brush. Colloids and Surfaces B-Biointerfaces 2017, 155(7): 408-414.
2016(1篇)
[24] 王思怿,郭旭虹,陈凯敏*. 聚合物刷与生物分子相互作用的研究进展. 功能高分子学报. 2016, 29(4): 359-376. (封面论文)
2015(5篇)
[23] Yu Xuanji, Huang Shibin, Chen Kaimin*, Zhou Zhiming, Guo Xuhong, Li Li. Preparation of functional janus particles with response to magnetic force. Industrial & Engineering Chemistry Research 2015, 54(10): 2690-2696.
[22] Hu Fenglin, Chen Kaimin, Xu Hong, Gu Hongchen. Functional short-chain zwitterion coated silica nanoparticles with antifouling property in protein solutions. Colloids and Surfaces B-Biointerfaces 2015, 126(2): 251-256.
[21] Huang Jing, Xu Jun, Chen Kaimin, Wang Tongshuai, Cui Chao, Wei Xiaoming, Zhang Rui, Li Li, Guo Xuhong. Synthesis of triblock copolymers via raft polymerization and their application as surfactants for crude oil-in-water emulsion. Industrial & Engineering Chemistry Research 2015, 54(5): 1564-1575.
[20] Qin Li, Xu Yisheng, Han Haoya, Liu Miaomiao, Chen Kaimin, Wang Siyi, Wang Jie, Xu Jun, Li Li, Guo Xuhong. β-Lactoglobulin (BLG) binding to highly charged cationic polymer-grafted magnetic nanoparticles: Effect of ionic strength. Journal of Colloid and Interface Science 2015, 460: 221-229.
[19] Wen Yicun, Zhang Rui, Li Qingsong, Chen Kaimin, Li Li, Guo Xuhong. Viscosity modulation by magnetic field for colloidal polyelectrolyte brushes. Canadian Journal of Chemical Engineering 2015, 93(9): 1588-1593.
2014(7篇)
[18] Chen Qingchuan, Wang Jie, Chen Kaimin, Zhang Rui, Li Li, Guo Xuhong. Heavy metal ions removal by nano-sized spherical polymer brushes. Chinese Journal of Polymer Science 2014, 32(4): 432-438.
[17] Qu Zhenyuan, Chen Kaimin, Gu Hongchen, Xu Hong. Covalent immobilization of proteins on 3D poly(acrylic acid) brushes: Mechanism study and a more effective and controllable process. Bioconjugate Chemistry 2014, 25(2): 370-378. (cover article)
[16] Chen Kaimin, Rana Subinoy, Moyano Daniel F., Xu Yisheng, Guo Xuhong, Rotello Vincent M. Optimizing the selective recognition of protein isoforms through tuning of nanoparticle hydrophobicity. Nanoscale 2014, 6(12): 6492-6495.
[15] Wang Mi, Gao Yanfeng, Cao Chuanxiang, Chen Kaimin*, Wen Yicun, Fang Dingye, Li Li, Guo Xuhong. Binary solvent colloids of thermosensitive poly(n-isopropylacrylamide) microgel for smart windows. Industrial & Engineering Chemistry Research 2014, 53(48): 18462-18472.
[14] Xu Yisheng, Wang Siyi, Han Haoya, Chen Kaimin, Qin Li, Xu Jun, Wang Jie, Li Li, Guo Xuhong. Enhancement of enzymatic activity by magnetic spherical polyelectrolyte brushes: a potential recycling strategy for enzymes. Langmuir 2014, 30(37): 11156-11164.
[13] Qu Zhenyuan, Xu Hong, Xu Ping, Chen Kaimin, Mu Rong, Fu Jianping, Gu Hongchen. Ultrasensitive ELISA using enzyme-loaded nanospherical brushes as labels. Analytical Chemistry 2014, 86(19): 9367-9371.
[12] Zhu Ying, Xu Hong, Chen Kaimin, Fu Jianping, Gu Hongchen. Encoding through host/guest assembly: Construction of multiplexed fluorescent beads. Chemical Communications 2014, 50(90): 14041-14044.
2013(6篇)
[11] Wang Siyi#, Chen Kaimin#, Li Li, Guo Xuhong. Binding between proteins and cationic spherical polyelectrolyte brushes: Effect of pH, ionic strength, and stoichiometry. Biomacromolecules 2013, 14(3): 818-827.
[10] Wang Siyi#, Chen Kaimin#, Kayitmazer A. Basak, Li Li, Guo Xuhong. Tunable adsorption of bovine serum albumin by annealed cationic spherical polyelectrolyte brushes. Colloids and Surfaces B-Biointerfaces 2013, 107: 251-256.
[9] Qu Zhenyuan, Hu Fenglin, Chen Kaimin, Duan Zongqiang, Gu Hongchen, Xu Hong. A facile route to the synthesis of spherical poly(acrylic acid) brushes via RAFT polymerization for high-capacity protein immobilization. Journal of Colloid and Interface Science 2013, 398: 82-87.
[8] Xu Yisheng, Engel Yoni, Yan Yunfeng, Chen Kaimin, Moyano Daniel F., Dubin Paul L., Rotello Vincent M. Enhanced electrostatic discrimination of proteins at nanoparticle functionalized surfaces. Journal of Materials Chemistry B 2013, 1(39): 5230-5234.
[7] Wang Siyi, Chen Kaimin, Xu Yisheng, Yu Xuanji, Wang Weihua, Li Li, Guo Xuhong. Protein immobilization and separation using anionic/cationic spherical polyelectrolyte brushes based on charge anisotropy. Soft Matter 2013, 9(47): 11276-11287.
[6] Zhao Tao, Chen Kaimin, Gu Hongchen. Investigations on the interactions of proteins with polyampholyte-coated magnetite nanoparticles. Journal of Physical Chemistry B 2013, 117(45): 14129-14135.
2010-2012(5篇,攻读博士)
[5] Zhu Yan#, Chen Kaimin#, Wang Xiang, Guo Xuhong. Spherical polyelectrolyte brushes as a nanoreactor for synthesis of ultrafine magnetic nanoparticles. Nanotechnology 2012, 23(26560126): 265601.
[4] Chen Kaimin, Zhu Yan, Zhang Yifei, Li Li, Lu Yan, Guo Xuhong. Synthesis of magnetic spherical polyelectrolyte brushes. Macromolecules 2011, 44(3): 632-639.
[3] Xu Yisheng, Mazzawi Malek, Chen Kaimin, Sun Lianhong, Dubin Paul L. Protein purification by polyelectrolyte coacervation: influence of protein charge anisotropy on selectivity. Biomacromolecules 2011, 12(5): 1512-1522.
[2] Chen Kaimin, Xu Yisheng, Rana Subinoy, Miranda Oscar R., Dubin Paul L., Rotello Vincent M., Sun Lianhong, Guo Xuhong. Electrostatic selectivity in protein-nanoparticle interactions. Biomacromolecules 2011, 12(7): 2552-2561.
[1] Chen Kaimin, Zhu Yan, Li Li, Lu Yan, Guo Xuhong. Recyclable spherical polyelectrolyte brushes containing magnetic nanoparticles in core. Macromolecular Rapid Communications 2010, 31(16): 1440-1443.
授权专利
[1] 一种以毛刷状微球为稳定剂的皮克林乳液及其制备方法,202110295079.5,授权日期:2022年10月14日
[2] 一种功能性毛刷状荧光微球的制备方法,201910555507.6,授权日期:2022年8月26日
[3] 一种单分散聚合物荧光微球的制备方法及其应用,201711365021.3,授权日期:2021年2月26日
[4] 一种纳米乳胶墨水,201710465999.0,授权日期:2020年9月15日
[5] 具有磁性内核的纳米球形聚电解质刷的制备方法,200910049103.6,授权日期:2012年1月11日
[6] 以纳米球形聚电解质刷为微反应器制备磁性粒子的方法,200910053204.0,授权日期:2011年11月23日
[7] 单组份固态环氧乙烯基树脂,200610118975.X,授权日期:2009年6月10日
专著与章节
[1] 温绍国,王继虎,陈凯敏 等 编著. 《涂料工程基础实验》,化学工业出版社,2022.
[2] Li Ziwei; Chen Kaimin*; Wang Mingwei*. Green materials for the synthesis of polyurethanes. In Materials and Chemistry of Flame-Retardant Polyurethanes Volume 1: A Fundamental Approach, 2021, 37-58.
上海工程技术大学是一所工程技术、经济管理、艺术设计等多学科互相渗透、协调发展的全日制普通高等学校。我校现有机械工程学院、电子电气工程学院、管理学院、化学化工学院、材料工程学院、汽车工程学院、艺术设计学院、航空运输学院、服装学院、基础教学学院、社会科学教学部、体育教学部等15个院、部;上海市汽车工程实训中心、计算中心、工程实训中心、艺术设计展示中心、服装设计展示中心5个设备先进的教学实训基地;能源与环境工程研究所、激光工业技术研究所、经济研究所、化工研究所、劳动关系研究中心5个科研机构。学校坚持依托产业办学,产学研紧密结合,主动为上海经济建设发展服务的办学方向,致力于培养具有创新精神和实践能力的高素质、综合型人才,形成了具有发展潜力的办学特色。
经过二十五年不懈努力,学校的科研、教学成果显著,办学规模逐步扩大,办学水平不断提高,教学质量稳步上升。我校的载用工具运用工程学科、服装设计与工程学科、公共艺术学科是上海市第四期重点培育学科,我校的学科建设力度不断加大,办学层次不断提高。
随着学校整体实力不断加强,与国外高等院校的交流日益发展,我校开展了与澳大利亚、日本、德国、加拿大等著名大学进行学者互访、学术交流和合作教育等活动。先后与法国、美国、韩国等著名大学开展合作办学,现有中法合作服装设计与工程专业、中美合作机械设计制造及其自动化(汽车工程)专业、中美合作交通运输(汽车运用技术)专业、中韩合作艺术设计(多媒体设计)专业。
根据市委、市府统一部署,学校将整体迁入松江大学园区,2003级学生全部进入松江大学园区。
目前学校正面临新的发展机遇,全校教职工必将在市委、市政府的领导下和社会各界的关心支持下,团结一致、振奋精神、开拓进取、乘胜前进,为把上海工程技术大学建设成为一所具有时代特色、多学科的现代化大学而不懈努力!