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团队简介
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课题组代表性论文
“多种极端条件下可自愈合材料”入选Nature Communicatoins期刊2020年度50大下载次数最多文章;
被Nature Chemistry评价:"极端环境自愈合的材料开发一直以来都是一项严峻的挑战,该作者开发的材料在多种极端环境下都展现了优异的自修复性能"
超低温度下(-78℃)自愈合高拉伸电子皮肤助力未来机器人极地科考
张雷,天津大学化工学院教授、博士生导师、生物化工系主任。入选国家自然科学基金委“优秀青年科学基金”、教育部“新世纪优秀人才支撑计划”、天津市“中青年科技创新领军人才”、“侯德榜化工青年奖”、“天津首届青年创新能手”等,担任《中国化工学报(英文版)》编委。开设了《生物材料及医疗器械》、《材料合成生物学》、《生物与制药工程前沿》等多门本硕博课程。已培养四十余名硕士、博士研究生(已毕业13名博士、31名硕士)。其中已累计有14人次获得国家奖学金,多人获评天津大学优秀毕业论文。2020年,获得天津大学第13届“我心目中的十佳好导师”称号。近年来主持科研项目10余项,在包括Nature Biotechnology, Nature Communications, Chemical Reviews, Journal of the American Chemical Society, Angewandte Chemie International Edition, Engineering, Research, AIChE Journal, Chemical Engineering Science, Chemical Engineering Journal, Advanced Functional Materials等高水平期刊发表论文100余篇,授权中国专利10余项,授权国际PCT专利1项并已进入美国。
杨静,天津大学化工学院副教授、博士生导师。入选国家级人才计划,获国家级大赛奖。主持科技委重点创新项目、国自然面上项目、国自然青年项目、天津市面上基金等10余项课题。第一/通讯发表包括Nat. Commun., JACS,Chem. Rev.在内的SCI论文40余篇,授权国内外专利10余项。
齐海山,天津大学化工学院副教授、硕士生导师。主持重点研究计划子课题、国家自然科学基金委“青年基金”、“天津市青年基金”以及“北洋学者*青年骨干教师”。发表SCI论文40余篇,申请中国发明专利10余项。
李庆斯,天津大学化工学院助理研究员。主要从事合成生物学、蛋白质药物、包埋材料、两性离子材料、血液净化材料等领域的研究。主持国家自然科学基金委“青年基金”。发表包括Chem. Rev., JACS在内的SCI论文30余篇,中文核心1篇。申请中国发明专利3项,授权2项。
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg迄今为止,在Nature Biotechnology, Nature Communications, Chemical Reviews, Journal of the American Chemical Society, Angewandte Chemie International Edition, Engineering, Research, Advanced Functional Materials, AIChE Journal, Chemical Engineering Journal, Chemical Engineering Science等期刊发表论文100余篇。
代表性论文列表如下(*代表通讯作者):
1. Lei Zhang, Zhiqiang Cao, Tao Bai, Louisa Carr,Jean-Rene Ella-Menye, Colleen Irvin, Buddy D Ratner, and ShaoyiJiang*.Zwitterionic hydrogels implanted in mice resist the foreign-dodyreaction. NatureBiotechnology, 2013, 31(6): 553-556.
2. Hongshuang Guo, Yi Han, Weiqiang Zhao, JingYang*, andLei Zhang*. Universally autonomous self-healing elastomer with highstretchability. NatureCommunications, 2020, 11(1): 2037.
3. Siia Xu#, Jie-Xiang Yu#, Hongshuang Guo, Shu Tian, YouLong, Jing Yang*, and Lei Zhang*. Force-induced ion generation inzwitterionic hydrogels for a sensitive silent-speech sensor. Nature Communications,2023, 14: 219.
4.Yiming Ma#, Jun Zhang#, Yunqing Tian, Yihao Fu, Shu Tian, Qingsi Li, Jing Yang*, Lei Zhang*.Zwitterionic Microgel Preservation Platform for circulating tumor cells in wholeblood specimen. Nature Communications, 2023, 14:4958.
5. Kai Yang#, Qingsi Li#, Shu Tian#, Jiancheng Wang,Guangming Lu, Hongshuang Guo, Sijia Xu, Lei Zhang*, and Jing Yang*. HighlyStretchable, Self-Healing, and Sensitive E‑Skins at −78 °C for Polar Exploration. Journal of theAmerican Chemical Society, 2024, 146(15): 10699-10707.
6. Xiangyu Zhang#, HerongWang#, Qingsi Li#, Zhaoxu Yin, Haishan Qi, Jing Yang, Xiaodong Wang, WenhaiXiao*, and Lei Zhang*. Development of organogels for live Yarrowia lipolytica encapsulation. Journal of the American ChemicalSociety, 2022, 144(23): 10251-10258.
7. Qingsi Li#, Chiyu Wen#, Jing Yang#, Xianchi Zhou#,Yingnan Zhu, Jie Zheng, Gang Cheng, Jie Bai, Tong Xu, Jian Ji, ShaoyiJiang*, Lei Zhang*, and Peng Zhang*. Zwitterionic biomaterials. Chemical Reviews,2022, 122(23): 17073-17154.
8. Haishan Qi#, Yihang Gao#, Lin Zhang, Zhongxin Cui,Xiaojie Sui, Jianfan Ma, Jing Yang, Zhiquan Shu, and Lei Zhang*. Rationaldesign and mechanism insight of an efficient antifreeze peptide forcryopreservation. Engineering, 2024,34: 164-173.
9. Xiaojie Sui#, Xiaodong Wang#, Chengcheng Cai, Junyi Ma,Jing Yang, and Lei Zhang*. AIE-active freeze-tolerant hydrogels enablemultistage information encryption and decryption at subzero temperatures. Engineering, 2023,23: 82-89.
10.Chiyu Wen#, Hongshuang Guo#, Yingnan Zhu, Haoyu Bai,Weiqiang Zhao, Xinsheng Wang, Jing Yang, Moyuan Cao*, and Lei Zhang*.Fully superhydrophilic, self-floatable, and multi-contamination-resistant solarsteam generator inspired by seaweed. Engineering,2023, 20: 153-161.
11. Shu Tian, Ruiqi Li, Xinmeng Liu, Jiancheng Wang, JunyuYu, Siia Xu, Yunqing Tian, Jing Yang*, and Lei Zhang*. Inhibition ofdefect-induced ice nucleation, propagation, and adhesion by bioinspiredself-healing anti-Icing coatings. Research, 2023, 6: 0140.
12. Lei Fu#, Weiqiang Zhao#, Jiayao Ma#, Mingyuan Yang,Xinmeng Liu, Lei Zhang*, and Yan Chen*. A humidity-powered soft robot withfast rolling locomotion. Research,DOI:10.34133/2022/9832901.
13. Jing Yang#, Min Liu#, Tiantong Zhang#, Jianfan Ma,Yiming Ma, Shu Tian, Ruiqi Li, You Han*, and Lei Zhang*. Cell-friendlyregulation of ice crystals by antifreeze organism-inspired materials. AIChE Journal,2022, 68(10): e17822.
14. Yihang Gao#, Haishan Qi#, and Lei Zhang*.Advances in antifreeze molecules: from design and mechanisms to applications. Industrial & EngineeringChemistry Research, 2023, 62(20): 7839-7858.
15. Pengguang Chen#, Shu Tian#, Hongshuang Guo#, JianchengWang, Xinmeng Liu, Sijia Xu, Ruiqi Li, Qingsi Li, Chiyu Wen, Jing Yang*,and Lei Zhang*. An extreme environment-tolerant anti-icing coating. Chemical Engineering Science,2022, 262: 118010.
16. Xiaojie Sui, Hongshuang Guo, Pengguang Chen,YingnanZhu, Chiyu Wen, Yihang Gao, Jing Yang, Xiangyu Zhang, and LeiZhang*.Zwitterionic osmolyte-based hydrogels with antifreezing property, highconductivity, and stable flexibility at subzero temperature. AdvancedFunctional Materials, 2019, 30(7): 1907986.
17. Yingnan Zhu#, Jiamin Zhang#, Jiayin Song#, JingYang,Zheng Du, Weiqiang Zhao, Hongshuang Guo, Chiyu Wen, Qingsi Li, XiaojieSui, andLei Zhang*. A multifunctional pro-healing zwitterionic hydrogel forsimultaneous optical monitoring of pH and glucose in diabetic wound treatment. Advanced FunctionalMaterials, 2019, 30(6): 1905493.
18. Jiamin Zhang#, Yingnan Zhu#, Jiayin Song, TongXu, JingYang, Yan Du, and Lei Zhang*. Rapid and long-term glycemic regulation with abalanced charged immune-evasive hydrogel in T1DM mice. Advanced FunctionalMaterials, 2019, 29: 1900140.
19. Chiyu Wen, Hongshuang Guo, Jing Yang, QingsiLi,Xiangyu Zhang, Xiaojie Sui, Moyuan Cao, and Lei Zhang*. Zwitterionichydrogel coated superhydrophilic hierarchical antifouling floater enablesunimpeded interfacial steam generation and multi-contamination resistance incomplex conditions. ChemicalEngineering Journal, 2021, 421: 130344.
20. Xiaojie Sui, Hongshuang Guo, Chengcheng Cai,Qingsi Li,Chiyu Wen, Xiangyu Zhang, Xiaodong Wang, Jing Yang, and Lei Zhang*.Ionicconductive hydrogels with long-lasting antifreezing, water retention andself-regeneration abilities. ChemicalEngineering Journal, 2021, 419: 129478.
21. Hongshuang Guo, Min Liu, Changhai Xie, YingnanZhu,Xiaojie Sui, Chiyu Wen, Qingsi Li, Weiqiang Zhao, Jing Yang*, and LeiZhang*. Asunlight-responsive and robust anti-icing/deicing coating based ontheamphiphilic materials. ChemicalEngineering Journal, 2020, 402: 126161.
22. Wanjun Chen#, Yingnan Zhu#, Zhe Zhang, Yue Gao,WenxinLiu, Qinggele Borjihan, Huihui Qu, Yana Zhang, Yanling Zhang, Yan-JieWang*, LeiZhang*, and Alideertu Dong*. Engineering a multifunctional N-halamine-basedantibacterial hydrogel using a super-convenient strategy for infected skindefect therapy. ChemicalEngineering Journal, 2020, 379: 122238.
23. Weiqiang Zhao#, Jing Yang#, Hongshuang Guo,Tong Xu,Qingsi Li, Chiyu Wen, Xiaojie Sui, Cunguo Lin, Jinwei Zhang*, and LeiZhang*.Slime-resistant marine anti-biofouling coating with PVP-based copolymer in PDMSmatrix. ChemicalEngineering Science, 2019, 207: 790-798.
24. Hongshuang Guo#, Jing Yang#, Weiqiang Zhao,Tong Xu,Cunguo Lin, Jinwei Zhang*, and Lei Zhang*. Direct formation of amphiphiliccrosslinked networks based on PVP as a marine anti-biofouling coating. Chemical EngineeringJournal, 2019, 374: 1353-1363.
25. Hongshuang Guo, Tong Xu, Jiamin Zhang, WeiqiangZhao,Jinwei Zhang, Cunguo Lin, and Lei Zhang*. A multifunctional anti-fog,antibacterial, and self-cleaning surface coating based on poly (NVP-co-MA). Chemical EngineeringJournal, 2018, 351: 409-417.
其他文章详见课题组网站(http://zhanglab.tju.edu.cn/)
张雷(教授、博士生导师、团队负责人)
邮箱:lei_zhang@tju.edu.cn
杨静(副教授、博士生导师)
邮箱:jing_yang@tju.edu.cn
齐海山(讲师、硕士生导师)
邮箱:hsqi@tju.edu.cn
李庆斯(助理研究员)
邮箱:liqingsi@tju.edu.cn
课题组网站:http://zhanglab.tju.edu.cn/
微信公众号:天大生物化工系张雷课题组
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