李莉娜

来源: 时间:2020年08月24日 12:56 作者: 点击:

基本情况

姓名李莉娜undefined

性别:女

职称:副教授

所在系别:无机非金属材料工程系

职务:无机非金属材料工程系副主任

是否博导:是

是否硕导:是

最高学历:研究生

最高学位:博士

电话:13844067649

Email:lilina@jlu.edu.cn

 

详细情况
所在学科专业:
无机非金属材料
研究方向:
多孔材料;光/电催化材料;吸附分离材料;电池材料
讲授课程:
本科生课程新能源材料与技术》计算机在材料学中的应用》复合材料学》
教育经历:
2008.09/2012.07/吉林大学/本科/学士
2012.09/2015.07/
吉林大学/研究生/硕士
2015.9/ 2018.06/
德国马普所交替界面所,德国波茨坦大学/研究生/博士
工作经历:

2019.01/2023.09/吉林大学/讲师

2023.10/至今/吉林大学/副教授

学术论文:

(1)Enhancing NO reduction to ammonia via porous aromatic frameworks: Co-modified PAF-TPP for efficient mass transfer and electrocatalytic performance, NANO RESEARCH,2026

(2)Graded Supramolecular Frameworks for Extending Space-Charge Modulation Regions and Boosting Carrier Dynamics in Perovskite Solar Cells, Advanced Materials, 2026

(3)Multiple-Synergistic Interfacial Layer Enabled by a Porous Aromatic Framework for Dendrite-Free Zinc Deposition in Ultrastable Zinc-Ion Batteries, ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2026

(4)Interfacial engineering of in situ grown porous aromatic framework integrated electrodes for electrochemical nitric oxide reduction, JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2026

(5)In situ grown hydroxyl-rich porous organic frameworks on carbon cloth for ultrasensitive and durable aptamer-based electrochemical detection of antibiotics, ELECTROCHIMICA ACTA, 2026

(6)Enhanced Photocatalytic Performance of a Tetraphenylethylene-Based Porous Aromatic Framework: Rational Design for Environmental Remediation, ACS Macro Letters, 2025

(7)Enhanced iodine adsorption performance of porous aromatic frameworks from nitrogen-containing monomers, Separation and Purification Technology, 2025

(8)PAF@BC composite membrane for multifunctional environmental Applications: Dye Separation, Degradation, and iodine Adsorption, interception, Separation and Purification Technology, 2025

(9) Dichloromethane-Knitting Synthesis of Fluorinated Porous Organic Polymers for Superior Sulfur Hexafluoride Adsorption and Separation, Separation and Purification Technology, 2025

(10)Lewis acid-catalyzed in situ growth of porous aromatic framework membranes via a three-step strategy for efficient oil-water separation, JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2025

(11)Fluorine Incorporation for Enhanced Gas Separation Performance in Porous Organic Polymers: Investigating Reaction Pathways and Pore Structure Control, ACS Applied Materials & Interfaces, 2024

(12)Construction of multibranched porous polymers from pitch precursors and the subsequent significant enhancement of iodine adsorption capacity, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025

(13)Enhanced pore structure regulation in porous aromatic framework materials via montmorillonite templating, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024

(14)Band structure tunable synthesis of photocatalytic Porous Aromatic Frameworks via Scholl reaction /Material & Design, 2020

(15) The preparation of Porosity Modified 1 Porous Organic 2 Frameworks via Kaolin Loading and its Improved Aromatic Organic Compounds Removal Performance/Microporous Mesoporous Materials/2021

(16)Synthesis of N-containing porous aromatic frameworks via Scholl reaction for reversible iodine capture/Microporous Mesoporous Materials/2021

获得专利:

一种掺杂高岭土的共钜微孔聚合物复合材料的制备方法

ZL 2020 1 1283375.5

科研项目:

国家重点研发计划深海稀土资源高效探测评价技术与示范项目子课题《深海富稀土沉积物综合利用研究》

《基于可逆感温技术的设备研究》

《SF6/N2混合气体现场回收分离技术研究与应用》

《可通过吸附和光催化方式有效处理实验室及厂矿用水有机污染物的多孔有机骨架材料及其复合材料的开发》

2021年吉林大学励新优秀青年教师培养计划

 


 

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