刘征
讲师 硕导
所属大学: 扬州大学
所属学院: 化学化工学院(创新材料与能源研究院)
个人主页:
https://teacher.yzu.edu.cn/liuzhengbeyond/zh_CN/index/492083/list/index.htm
个人简介
教育经历 2016.92019.6 哈尔滨工程大学材料科学与工程博士 2013.92016.6 济南大学化学工程与技术硕士 2009.92013.6 青岛大学化学工程与工艺 工作经历 2021.11至今 扬州大学化学化工学院青年百人 2019.72021.11 中国石油大学(华东)材料科学与工程学院博士后
研究领域
锂/钠/钾离子电池关键材料的结构设计及其电化学性能研究 水系、固态和半固态电池等高安全储能体系的开发 分子工程理论在储能体系中的基础与应用研究
近期论文
Multi-dimensional Assembly of ZnO Nanodots in the Reticular Carbon Nanofibers for High-performance Lithium-ion Batteries.[Research Atricle].Carbon,2024,223 MnO-pillared Graphene Blocks Enabling the Ultrastable and Ultrafast Aqueous Zinc Ion Batteries.[Research Atricle].Science China-Chemistry,2024, 王冠文,迟春蕾,孟玉.Acetate ion-intercalated NiCo-LDH with quasi-theoretical capacitance for high energy/power density aqueous supercapacitors.[Research Atricle].Inorganic Chemistry Frontiers,2023,11863-873. Graphene Oxide Block Derived Edge-Nitrogen Doped Quasi-Graphite for High K+ Intercalation Capacity and Excellent Rate Performance.[Research Atricle].Advanced Energy Materials,2023,13(46): Bioinspired Design of Na+ Conduction Channels in Covalent Organic Frameworks for Quasi-solid-state Sodium Battery.[Research Atricle].Nature Communications,2023,14(3066): Highly Redox-active Oligomers between Graphene Sheets as Ultrahigh Capacitance/Rate and Stable Electrodes for Supercapacitors.[Research Atricle].Energy Storage Materials,2023,60 Dual-molecules Cooperatively Confined in-between Edge-oxygen-rich Graphene Sheets as Ultra-high Rate and Stable Electrodes for Supercapacitors.[Research Atricle].Small,2023,19(36): Balance of Sulfur Doping Content and Conductivity of Hard Carbon Anode for High- performance K-Ion Storage.[Research Atricle].Energy Storage Materials,2022,54668-679. “Trapping-Interception-Conversion” Strategy Based on Mott-Schottky Heterogeneous Interlayer for Li-S Batteries with High Stability and Commercial Sulfur Utilization.[Research Review].Advanced Energy Materials,2022,12(14): Strong Oxidation Induced Quinone-rich Dopamine Polymerization onto Porous Carbons as Ultrahigh-Capacity Organic Cathode for Sodium-Ion Batteries.[Research Atricle].Energy Storage Materials,2021,43120-129. Polarity-induced precipitation of S/Li2S confined into N and S co-doped porous graphene layered matrix for lithium sulfur batteries.[Research Atricle].Carbon,2021,184544-553. Recent Developments of Transition Metal Compounds-Carbon Hybrid Electrodes for High Energy/Power Supercapacitors.[Research Review].Nano-Micro Letters,2021,13 Tin Nanodots Derived from Sn2+/Graphene Quantum Dot Complex as Pillars into Graphene Blocks for Ultrafast and Ultrastable Sodium-Ion Storage.[Research Atricle].Small,2020,16(38): High-efficiency Utilization of Carbon Materials for Supercapacitors.[Research Review].Nano Select,2020,1(2):244-262. Covalent Grafting of P-phenylenediamine Molecule onto “Bubble-like” Carbon Surface for High Performance Asymmetric Supercapacitors.[Research Atricle].Journal of Materials Chemistry A,2019,8(4):1767-1778. Mesoporous Single-Crystalline MnOx Nanofibers@Graphene for Ultra-High Rate and Long-Life Lithium-Ion Battery Anodes.[Research Atricle].Journal of Materials Chemistry A,2018,6(48):24756-24766. Edge-Nitrogen-Rich Carbon Dots Pillared Graphene Blocks with Ultrahigh Volumetric/Gravimetric Capacities and Ultralong Life for Sodium-Ion Storage.[Research Atricle].Advanced Energy Materials,2018,8(30): Oxygen clusters distributed in graphene with "Paddy Land" structure: Ultrahigh capacitance and rate performance for supercapacitors.[Research Atricle].Advanced Functional Materials,2017,28(5): A fluorescent sensor for Zn2+ and NO2- based on the rational control of C=N isomerization.[Research Atricle].Organic & Biomolecular Chemistry,2016,14(4260-4266): A fluorescent sensor with a detection level of pM for Cd2+ and nM for Cu2+ based on different mechanisms.[Research Atricle].Chemical Communication,2015,5114227-14230.