刘峰,1974年6月出生,江西省高安市人,南昌大学化学化工学院教授,博士生导师。2006年3月毕业于中国科学院长春应用化学研究所有机化学专业,获理学博士学位,导师为我国“聚酰亚胺之父”丁孟贤研究员;2006年进入南昌大学,组建课题组;2009年至2012年在南京大学从事博士后研究,合作导师为游效曾院士;2014年受国家留学基金委资助,在美国佛罗里达大学化学系Prof. Stephen Albert Miller课题组进行了为期一年的访学研究。
指导毕业研究生50余名,出版《有机硅化合物化学》(化工出版社)专著1部,国家发明专利10余项,主持完成3项国家自然科学基金项目,及多项省部级和企业委托技术开发科研项目。
本课题组通过长期的理论和应用研究,设计合成了一系列新型高性能材料,包括低介电、高透明聚酰亚胺薄膜,高性能聚醚砜材料,特种有机硅材料(含高耐热有机硅、氟化有机硅、亲水性有机硅及生物医用有机硅材料);研究工作主要面向航空航天、微电子及医疗器械行业,开发新型结构小分子及聚合物,优化材料性能,提升后端应用领域中器件或器械的使用安全性和可靠性,并实现产业转化及应用。
附录:
主持完成国家级项目:
国家自然科学基金青年项(批准50803026):热固性聚酰亚胺树脂的共聚研究及其在电子封装中的应用 ,21万,2009.1-2011.12
国家自然科学基金地区项目(批准号51263014):电解铜箔表面新型保护性膜材料的结构设计、合成及电化学防腐性能,50万,2013.1-2016.12
国家自然科学基金面上项目(批准号52073136):新型“天然产物结构衍生”脂环聚酰亚胺材料的制备及其“结构-性能”研究,58万(直接经费),2021.1-2024.12
部分发明专利:
一种改性钛白粉及其制备方法和应用,CN202512056640.5
一种高通量血液相容聚酰亚胺分离膜的制备方法及应用,CN120644082A
一种高防污聚芳醚分离膜及其制备方法和应用,CN120644079A
一种咪唑盐结构修饰的聚乙二醇基导电自修复水凝胶及其制备方法与应用, CN120484243A
一种咪唑环二胺单体及其制备方法、本征黑色聚酰亚胺材料及其制备方法与应用, CN120904110A
一种含有1,2,2-三甲基环戊基脂环结构的二酐及其制备方法,CN102276562B(已授权)
一种双端氨基(聚)硅氧烷的制备方法,CN102276639B(已授权)
含聚酰亚胺改性的硅烷偶联剂涂层的漆包线,CN103680700B(已授权)
论文代表作:
十篇最近论文:
1.Xun Wang, Yin Qiao, Zesheng Song, Lirong Yang, Yang Yu, Ziye Yu, Chu Zeng, Feng Liu*, Phosphorylated zwitterionic fluorinated polyimide membranes: Molecular hydration dominated blood contacting bio-Interface for enhancing antifouling, anticoagulation, and biocompatibility, Advanced Functional Materials 2026, 36, e76635
2.Xun Wang, Yin Qiao, Lirong Yang, Zesheng Song, Tianmin Cao, Ziye Yu, Yang Yu, Zhuo Zhang, Jiayi Zhang, Haixia Qi, Feng Liu*, Zwitterionic betaine or choline phosphate poly(aryl ether sulfone) ultraffltration membranes for enhanced anti-biofouling and hemocompatibility, Journal of Membrane Science 2026, 753, 125649
3.Xiaona Zhai, Yanxiang Mao, Tangsong Zhu, Lirong Yang, Hui Li, Zhuo Zhang, Haixia Qi*, Feng Liu*, Tetrahedral carbon-containing cardo-groups tailored for thermally stable and low dielectric polyimides: Monomer design and polymer performance optimization, Reactive and Functional Polymers 2026, 224, 106759
4.Xun Wang, Zesheng Song, Lirong Yang, Lei Xiong, Hui Li, Junchao Wei, Fubao Zhang, Haixia Qi, Feng Liu*, Direct choline phosphate Zwitterionization on poly (ether sulfone) offers inhibited coagulation and immune response for blood-contacting ultrafiltration membranes, Separation and Purification Technology 2026, 383, 136115
5.Yin Qiao, Lirong Yang, Min Xu, Ziye Yu, Xun Wang, Zesheng Song, Cong Yu, Shichang Chen, Haixia Qi*, Feng Liu*, Degradable and antibacterial bio-based all heteroaromatic functional high-performance polyimides, Polymer 2026, 365, 130727
6.Hui Li, Lirong Yang, Tangsong Zhu, Xiaona Zhai, Chu Zeng, Yunfei Zeng, Jianwen Tian, Haixia Qi, Feng Liu*, High-performance N-substituted benzimidazole-based polyimide films with low dielectric constant and dielectric loss, Journal of Polymer Science 2026, 64, 2185-2197
7.Lirong Yang, Hui Li, Fubao Zhang, Xun Wang, Xiaona Zhai, Yin Qiao, Haixia Qi*, Haoyuan You*, Feng Liu*, A hierarchical 3-tier architecture enables excellent biointerface for zwitterionic fluorinated imidazole-containing polyethersulfone ultrafiltration membranes, Applied Surface Science 2026, 740, 167006
8.Min Xu, Xun Wang, Hefeng Xu, Xinyi Zhang, Yuqing Yao, Zesheng Song, Yin Qiao, Cong Yu, Feng Liu*, Gold-modified hierarchical ZnO–Cellulose flower-like multifunctional membrane for enhanced wastewater treatment: Multifunctional oil/water separation, solar-powered catalytic dye degradation, and antibacterial applications, Journal of Environmental Sciences 2026, 161, 241-253
9.Zesheng Song, Xun Wang, Bingrong Liu, Yi Wang, Linfu He, Xinyi Zhang, Yuqing Yao, Tianwei Yu, Min Xu, Haixia Qi*, Junchao Wei, Feng Liu*, Bioactive binary Schiff-base hydrogel from chitosan and functional PEGylated dialdehydes: Synthesis and structure-properties correlation, Carbohydrate Polymers 2025, 370, 124401
10.Xun Wang, Zesheng Song, Xinyi Zhang, Yuqing Yao, Min Xu, Haixia Qi*, Junchao Wei, Feng Liu*, Intrinsic biological antifouling zwitterionic H-bonded fluorinated polyimide ultrafiltration membranes: Carboxybetaine/sulfobetaine zwitterions trigger strong hydrophilic-hydrophobic exclusion. Chemical Engineering Journal 2025, 512, 162656