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个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 精细化工全国重点实验室主任,教育部智能材料化工前沿科学中心执行主任,大连理工大学膜科学与技术研究开发中心主任
性别:女
毕业院校:中国科学院大连化物所
学位:博士
所在单位:化工学院
学科:化学工程. 膜科学与技术. 生物医学工程
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- [1]孙小军.Jie Liu,Li Gao,Xiaoming Yan,贺高红.底梦婷.Continuous Covalent Organic Frameworks Membranes: From Preparation Strategies to Applications (Small 44/2023)[J],Small,2025,19(44):n/a-n/a
- [2]房庭旭.逄博,崔福军,姜晓滨,吴雪梅,贺高红.高分散COF基离子传导膜提高全钒液流电池性能[J],膜科学与技术,2025,45(04):95-103+112
- [3]邢利欣.Huang, Shiqi,郑文姬,姜晓滨,张守海,贺高红,阮雪华.韦梦诗,王佳铭.Hierarchical structure control for ultra-high-flux helium separation membranes based on fluorinated polyimide materials[J],Advanced Membranes,2025,5
- [4]逄博.陈婉婷,李甜甜,Cui, Fujun,吴雪梅,姜晓滨,焉晓明,贺高红.A Hierarchical Nano/Sub-nano Hybrid Ion Conduction Channel Induced by Ion-Cluster-Confined Hydrolysis for High Ion Selectivity in Vanadium Redox Flow Batteries[J],ACS ENERGY LETTERS,2025,10(9):4418-4427
- [5]司文杰.贺高红,于淼,李甜甜,李祥村,郑文姬,代岩,姜晓滨.牟家微,王佳利.Boron-doping enabled multi-site electronegativity enhancement in carbon nitride for high-performance aqueous zinc-ion batteries[J],CHEMICAL ENGINEERING SCIENCE,2025,320
- [6]李子恒.代岩,阮雪华,姜晓滨,郑文姬,贺高红.计盛涵,姚凤婷.Confinement-gradient crosslinking strategy for dynamic-gated iCOF@PEI ultrathin composite membranes toward precision H2/CO2 separation[J],SEPARATION AND PURIFICATION TECHNOLOGY,2025,380
- [7]Fan, Xingshuo.Wu, Jianghao,Huang, Shenhao,郗元,张晓鹏,鲍军江,贺高红,Shen, Zhuanglin.张宁,戴福成.Sandwich-structured COF membranes for efficient transmembrane Na+/Cl- permselectivity of reverse electrodialysis[J],DESALINATION,2025,617
- [8]RASHIDA SHAHBAZ.贺高红,马沧海.李天佑,孙永超,SHARIF SAMRINA.Amino-modified bimetallic ZIF (Zn/Co-NH2)/Polyimide-based mixed matrix membranes for enhanced hydrogen separation[J],SEPARATION AND PURIFICATION TECHNOLOGY,2025,377
- [9]李子恒.郑文姬,阮雪华,Dai, Yan,姜晓滨,吴雪梅,贺高红.姚凤婷.3D Interwoven COFs nano-network: Synergistic integration of CO2-philic and low-resistance transport through continuous electrospun-based pathways[J],Journal of Membrane Science,2025,734
- [10]Mao, Weining.代岩,郗元,Liang, Hai,贺高红.Coalescence criterion model for evaluating binary collision of wet particles based on velocity-energy modes[J],CHEMICAL ENGINEERING RESEARCH & DESIGN,2025,220:246-258
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