| 姓名 | 王貴友 | 性別 | 男 | 出生年月 | 1971.9 | 職稱 | 副教授 | 所屬教研室 | PSSP | 辦公室地點 | 1-411 | E-mail | | 聯(lián)系電話 | 021-64252271 | 招生專業(yè) | 材料科學(xué)與工程,高分子化學(xué)與物理,材料工程 | | |
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主要經(jīng)歷與簡歷: (1)1999年7月至今華東理工大學(xué)任教,副教授,博士生導(dǎo)師; (2)2000年7月-2000年9月作為高級科學(xué)家公派至美國Huntsman公司設(shè)在比利時的聚氨酯研發(fā)中心進(jìn)行“聚氨酯材料”方面的科學(xué)研究; (3)2001年7月獲上海市青年科技啟明星,2004年獲上海市教委優(yōu)秀青年教師。 |
| 主要從事聚氨酯材料、阻燃高分子材料、高分子合成和膠黏劑等方面的研究。作為項目負(fù)責(zé)人主持了國家科技部、國家教育部、上海市科委、上海市經(jīng)信委以及一些國際公司如“陶氏化學(xué)公司”、“杜邦公司”、“美國空氣與化學(xué)公司”和“美國亨斯曼公司” 和國內(nèi)公司等資助的項目。在特殊聚酯和聚醚多元醇、聚氨酯膠粘劑、水性聚氨酯材料、汽車座椅革材料、吸音與隔熱用聚氨酯復(fù)合材料等方面均取得較好的研究成果,且這些研究成果均已經(jīng)轉(zhuǎn)化為生產(chǎn)力。在國內(nèi)外知名期刊上如“Macromolecules”,“Chemical Engineering Journal”,“Polymer”,“Polymer Degradation and Stability”,“Industrial Crops and Products”和“Progress in Organic Coatings”等發(fā)表了論文80余篇和獲得7項授權(quán)的中國發(fā)明專利。 | 主要社會兼職: (1)上海市粘結(jié)協(xié)會理事; (2)“中國膠黏劑”期刊編委; (3)“粘接”期刊編委。 |
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歡迎感興趣的同學(xué)加入我們的研究團(tuán)隊,請把簡歷發(fā)到 guiyouwang@ecust.edu.cn。
主要學(xué)術(shù)成果 |
近幾年發(fā)表的論文主要如下:
1. Wang J, Tian D, Zhang X, Pan H, Ding Y, Wang G*, Hu A*. Synthesis of Narrowly Distributed α,ω-Bifunctionalized Conjugated Polymers. Macromolecules, 2023; 56 (15):5835-5842.(SCI 1區(qū))
2. Gu X, Meng X, Zhu Y, Wang G*. Fabrication of a robust superhydrophobic coating from the aqueous self-assembly of perfluoropolyether-based triblock copolymers. Progress in Organic Coatings, 2023: 174:107242. (SCI 1區(qū))
3. Chen X, Li X, Zhang H, Li H*, Wang G*, Cui Y*. Cross-Linked Fluorinated Polyurethanes against Chemical Warfare Agent Simulants: Properties Affected by the Structure of Diisocyanate. Macromolecules, 2023; 56 (21):8993-9002.(SCI 1區(qū))
4. Yu X, Li BJ, Wang J, Shang Z, Tian D, Wang G, Hu A*. Polycondensation in confined nanopores toward the selective formation of narrowly dispersed linear polyesters. Polymer Chemistry, 2022; 13 (28):4136-4143.(SCI 1區(qū))
5. Peng F, Yang X, Zhu Y, Wang G*. Effect of the symmetry of polyether glycols on structure-morphology-property behavior of polyurethane elastomers. Polymer 2022; 239:124429. (SCI 2區(qū))
6. Guo S, Zhu Y, Mei Q, Wang G*. Preparation of bio-degradable polyurethane based on poly(1,3-propylene 3,6,9-trioxaundecanedioate) glycol. Polymers for Advanced Technologies, 2022; 33 (12):4152-4162.(SCI 2區(qū))
7. Gu X, Gao T, Meng X, Zhu Y, Wang G*. Enhanced hydrophobicity of polyurethane with the self-assembly of perfluoropolyether-based triblock copolymers. Progress in Organic Coatings, 2022; 162:106561.(SCI 1區(qū))
8. Chen T, Zhang Q, Xu X, Zhu Y, Wang G*. Preparation and properties of 100% renewably sourced poly(trimethylene ether) glycol‐based waterborne polyurethane with perfluoropolyether unit. Polymers for Advanced Technologies, 2022; 33 (3):915-926. (SCI 2區(qū))
9. Zhang L, Zhang C, Gu X, Wang G*. Self-assembly, pH-responsibility and controlled release of doxorubicin of PDEAEMA-PEG-PDEAEMA triblock copolymers: effects of PEG length. Journal of Polymer Research, 2021; 28 (5):175.(SCI 3區(qū))
10. Yang X, Zhao L, Peng F, Zhu Y, Wang G*. Co-based metal-organic framework with phosphonate and triazole structures for enhancing fire retardancy of epoxy resin. Polymer Degradation and Stability, 2021; 193:109721.(SCI 2區(qū))
11. Guo Y, Zhang S, Wang G*, Zhu Y*. Fabrication of Anisotropic Polyphosphazene/Bio-based Poly (urethane-acrylate) composite foams with High Thermal Insulation and Flame Retardancy. Polymer, 2021; 231:124108.(SCI 2區(qū))
12. Fang Y, Miao J, Yang X, Zhu Y, Wang G*. Fabrication of polyphosphazene covalent triazine polymer with excellent flame retardancy and smoke suppression for epoxy resin. Chemical Engineering Journal, 2020; 385:123830.(SCI 1區(qū))
13. Yang T, Feng C, Zhao P, Wu Y, Ding Y, Wang G*, Hu A*, Fluorescent electronic tongue supported with water-borne polyurethane for the discrimination of nitroaromatics in aqueous solution. Journal of Materials Chemistry C, 2020; 8(7):2500-2506.(SCI 1區(qū))
14. Wang W, Wang D, Wang G, Zheng M, Wang G*. Elastic, Conductive Coating Layer for Self‐Standing Sulfur Cathode Achieving Long Lifespan Li–S Batteries. Advanced Energy Materials, 2020; 10 (25):1904026.(SCI 1區(qū))
15. Gao T, Gu X, Guo S, Wang G*. Synthesis, self-assembly of perfluoropolyether based ABA-triblock copolymers for superhydrophobic surface applications. Polymer. 2020; 205:122732.(SCI 2區(qū))
16. Miao J, Fang Y, Yang X, Zhu Y, Hu A,Wang G*. Fabrication, flame retardancy and physical properties of phosphorus containing porous organic polymers/epoxy resin composites. Polymer Degradation and Stability, 2020; 176:109159.(SCI 2區(qū))
17. Gu X, Guo S, Wang G*. Preparation, hydrogen bonding and properties of polyurethane elastomers with 1,2,3‐triazole units by click chemistry. Polymer Engineering & Science, 2020; 60(12):3270-3280.(SCI 4區(qū))
18. Ruan M, Luan H, Wang G*, Shen M. Bio-polyols synthesized from bio-based 1,3-propanediol and applications on polyurethane reactive hot melt adhesives. Industrial Crops and Products, 2019; 128:436-444.(SCI 1區(qū))
19. Miao J, Fang Y, Guo Y, Zhu Y, Hu A*, Wang G*. Interpenetrating Polymer Networks of Porous Organic Polymers and Polyurethanes for Flame Resistance and High Mechanical Properties. ACS Applied Polymer Materials, 2019; 1(10):2692-2702.(SCI 2區(qū))
20. Luan HC, Zhu Y, Wang G*. Synthesis, self-assembly, biodegradation and drug delivery of polyurethane copolymers from bio-based poly(1,3-propylene succinate). Reactive & Functional Polymers, 2019; 141:9-20.(SCI 2區(qū))
21. Zhang C, Luan H, Wang G*. A novel thermosensitive triblock copolymer from 100% renewably sourced poly(trimethylene ether) glycol. Journal of Applied Polymer Science, 2018; 135(14):46112.(SCI 3區(qū))
22. Niu X, Nie Z, Wang G*. Preparation, flame retardancy, and thermal and mechanical properties of polyurethane containing phosphonated bisphenol-A units. Fire and Materials, 2018; 42(8):933-945. (SCI 4區(qū))
23. 阮朦夢, 彭飛, 王貴友*. 聚丙烯酸酯樹脂/聚氨酯反應(yīng)型熱熔膠的制備與性能. 中國膠粘劑, 2021; 30 (1):12-17.
24. 曹寶仁, 許祥鴻, 王貴友*. 基于聚二元羧酸異山梨醇酯二醇聚氨酯的制備與性能. 功能高分子學(xué)報, 2020; 33 (4):373-381.
25. 李兵兵, 王貴友*. 有機金屬鉻催化劑制備口惡唑烷酮改性環(huán)氧樹脂及其固化材料的性能. 高分子材料科學(xué)與工程, 2018; 34 (10):21-27.
26. 刁森森, 阮朦夢, 王貴友*. 基于100%可再生聚三亞甲基醚二元醇聚氨酯水凝膠的合成與性能. 功能高分子學(xué)報, 2018; 31 (4):330-339.