张春玲

来源: 时间:2017年10月18日 10:06 作者: 点击:

基本情况

姓名: 张春玲

ED86B性别:女

职称:教授

所在系别:高分子材料与工程系

是否博导:是

最高学历: 研究生

最高学位: 博士

电话:13504330542

Email: clzhang@jlu.edu.cn


详细情况
所在学科专业: 材料学高分子材料与工程
所研究方向: 生物质阻燃材料;智能水凝胶;聚合物泡沫材料
讲授课程: 高分子化学
教育经历: 1995/09–1999/06,吉林大学,包装学院包装工程系,学士
1999/09–2001/06,吉林大学,化学学院高分子化学与物理系,硕士
2001/09–2004/06,吉林大学,化学学院高分子化学与物理系,博士
工作经历: 2004/07–2006/09,吉林大学,材料科学与工程学院高分子材料与工程系,讲师
2006/09–2013/09,吉林大学,材料科学与工程学院高分子材料与工程系,副教授
2006/11–2007/10,俄罗斯门捷列夫化工大学,高分子化工系,访问学者
2005/10–2008/12,中国科学院长春应用化学研究所,高分子物理与化学国家重点实验室,博士后
2013/09–至今,吉林大学,材料科学与工程学院高分子材料与工程系,教授
科研项目:

国家级项目

国家自然科学基金面上项目,58万,项目负责人

科技部对俄国际合作项目 371万,项目负责人

省部级项目

吉林省科技厅国际合作项目 10万,项目负责人
吉林省科技厅应用基础项目 6万,项目负责人
长春市科技局国际合作项目 3万,项目负责人

学术论文:

通讯联系人发表SCI论文(近5年)

[1] S. Luo, X. Dai, Y. Sui, P. Li, C. Zhang*, Preparation of biomimetic membrane with hierarchical structure and honeycombed through-hole for enhanced oil–water separation performance, Polymer 218 (2021). 10.1016/j.polymer.2021.123522.

[2] X. Dai, P. Li, Y. Sui, C. Zhang*, Thermal and flame-retardant properties of intrinsic flame-retardant epoxy resin containing biphenyl structures and phosphorus, European Polymer Journal 147 (2021). 10.1016/j.eurpolymj.2021.110319.

[3] X. Dai, P. Li, Y. Sui, C. Zhang*, Synthesis and performance of flexible epoxy resin with long alkyl side chains via click reaction, Journal of Polymer Science (2021). 10.1002/pol.20210044.

[4] P. Li, X. Dai, Y. Sui, R. Li, C. Zhang*, Thermally induced and physically cross-linked hydrogel doped with graphene oxide for controlled release, Soft Matter (2021). 10.1039/d1sm00151e.

[5] R. Li, Q. Fang, P. Li, C. Zhang*, Y. Yuan, H. Zhuang*, Effects of Emulsifier Type and Post-Treatment on Stability, Curcumin Protection, and Sterilization Ability of Nanoemulsions, Foods 10(1) (2021) 149.

[6] C. Zhang, J. Zhang, T. Xu, H. Sima, J. Hou*, Effects of Polyhedral Oligomeric Silsesquioxane (POSS) on Thermal and Mechanical Properties of Polysiloxane Foam, Materials 13(20) (2020) 4570.

[7] Y. Sui, L. Qu, P. Li, X. Dai, Q. Fang, C. Zhang*, Y. Wang, Covalently functionalized graphene oxide wrapped by silicon–nitrogen-containing molecules: preparation and simultaneous enhancement of the thermal stability, flame retardancy and mechanical properties of epoxy resin nanocomposites, RSC Advances 10(24) (2020) 13949-13959.

[8] Y. Sui, L. Qu, X. Dai, P. Li, J. Zhang, S. Luo, C. Zhang*, A green self-assembled organic supermolecule as an effective flame retardant for epoxy resin, RSC Advances 10(21) (2020) 12492-12503.

[9] L. Qu, Y. Sui, C. Zhang*, P. Li, X. Dai, B. Xu*, D. Fang, POSS-functionalized graphene oxide hybrids with improved dispersive and smoke-suppressive properties for epoxy flame-retardant application, European Polymer Journal 122 (2020) 109383.

[10] L. Qu, Y. Sui, C. Zhang*, P. Li, X. Dai, B. Xu*, Compatible cyclophosphazene-functionalized graphene hybrids to improve flame retardancy for epoxy nanocomposites, Reactive and Functional Polymers 155 (2020).

[11] L. Qu, Y. Sui, C. Zhang*, X. Dai, P. Li, G. Sun, B. Xu*, D. Fang, Improved flame retardancy of epoxy resin composites modified with a low additive content of silica-microencapsulated phosphazene flame retardant, Reactive and Functional Polymers 148 (2020) 104485.

[12] P. Li, X. Dai, L. Qu, Y. Sui, C. Zhang*, Dual responsive oligo(lysine)-modified Pluronic F127 hydrogels for drug release of 5-fluorouracil, RSC Advances 10(41) (2020) 24507-24514.

[13] C. Zhang, X. Dai, Y. Wang, G. Sun, P. Li, L. Qu, Y. Sui, Y. Dou*, Preparation and Corrosion Resistance of ETEO Modified Graphene Oxide/Epoxy Resin Coating, Coatings 9(1) (2019) 46.

[14] T. Xu, J. Zhang, L. Qu, X. Dai, P. Li, Y. Sui, C. Zhang*, Fabrication of polysiloxane foam with a pendent phenyl group for improved thermal insulation capacity and thermal stability, New Journal of Chemistry 43(16) (2019) 6136-6145.

[15] P. Li, C. Zhang*, R. Li, L. Qu, X. Dai, Y. Sui, J. Hou*, Multiple Physically Cross-Linked F127−α-CD Hydrogels: Preparation, Sol–Gel Transformation, and Controlled Release of 5-Fluorouracil, ACS Applied Bio Materials 2(1) (2019) 527-532.

[16] 王英楠, 戴雪岩, 徐天璐, 曲立杰, 张春玲*, 环氧树脂/硅基⁃纳米SiO2涂层的制备及防腐蚀性, 高等学校化学学报 39(7) (2018) 1564-1572.

[17] C. Zhang, L. Qu, Y. Wang, T. Xu, C. Zhang*, Thermal insulation and stability of polysiloxane foams containing hydroxyl-terminated polydimethylsiloxanes, RSC Advances 8(18) (2018) 9901-9909.

[18] T. Xu, C. Zhang*, P. Li, X. Dai, L. Qu, Y. Sui, J. Gu, Y. Dou*, Preparation of dual-functionalized graphene oxide for the improvement of the thermal stability and flame-retardant properties of polysiloxane foam, New Journal of Chemistry 42(16) (2018) 13873-13883.

[19] L. Qu, C. Zhang*, P. Li, X. Dai, T. Xu, Y. Sui, J. Gu, Y. Dou*, Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant, RSC Advances 8(52) (2018) 29816-29829.

[20] L. Qu, A. Li, J. Gu, C. Zhang*, Thermal Energy Storage Capability of Polyurethane Foams Incorporated with Microencapsulated Phase Change Material, ChemistrySelect 3(11) (2018) 3180-3186.

[21] P. Li, X. Hou, L. Qu, X. Dai, C. Zhang*, PNIPAM-MAPOSS Hybrid Hydrogels with Excellent Swelling Behavior and Enhanced Mechanical Performance: Preparation and Drug Release of 5-Fluorouracil, Polymers 10(2) (2018) 137.

[22] C. Zhang, C. Zhang, R. Huang, X. Gu*, Effects of hollow microspheres on the thermal insulation of polysiloxane foam, Journal of Applied Polymer Science 134(18) (2017) 44778.

[23] X. Hou, W. Yang*, A. Li, J. Hou, C. Zhang*, Effects of incorporating acrylolsobutyl polyhedral oligomeric silsesquioxane on the properties of P(N-isopropylacrylamide-co-poly(ethylene glycol) diacrylate) hybrid hydrogels, Polymer Bulletin 74(5) (2017) 1831-1847.

[24] X. Hou, Y. Wang, G. Sun, R. Huang, C. Zhang*, Effect of polyaniline-modified glass flakes on the corrosion protection properties of epoxy coatings, High Performance Polymers 29(3) (2017) 305-314.

[25] X. Hou, Y. Wang, J. Hou, G. Sun, C. Zhang*, Effect of polyaniline-modified glass fibers on the anticorrosion performance of epoxy coatings, Journal of Coatings Technology and Research 14(2) (2017) 407-415.


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