个人概况: |

|
姓 名 |
曲干 |
职 称 |
副教授 |
研究方向 |
高能量密度锂硫电池、全固态电池等 |
邮 箱 |
gqu@zzu.edu.cn |
教育和科研工作经历:(时间倒序) |
2023.03 - 至今,郑州大学,副教授/博士生导师 2020.01-2023.02,郑州大学,讲师 2018.10-2019.10,National University of Singapore,访问学者 2017.09-2019.10,深圳大学,光学工程博士后流动站,博士后 2013.09-2017.06,武汉大学,材料物理与化学,博士 2011.09-2013.06,武汉大学,化学工程,硕士 2007.09-2011.07,河南大学,材料化学,学士 |
研究介绍: (200字以内,根据自身情况编辑) |
申请人长期从事电化学储能器件中电极材料的设计与制备研究,围绕锂硫电池中硫物种的反应动力学速率调控问题,开展结构明确的单/双金属位点催化材料的制备及其催化机理的研究;围绕全固态电池中的离子输运、界面电化学及电解质稳定性等问题,开展了一系列研究。主持国家自然科学基金面上项目和青年项目、河南省优势学科项目、中国博士后特别资助等,发表文章20余篇,授权发明专利2项等。 |
荣誉与奖励: |
河南省教育厅科技论文壹等奖(第一) 郑州大学教学成果奖(研究生教育,第五) Journal of Energy Science and Technology 编委 |
代表性论著:(限10项内) |
格式示例:(以申请自然科学基金项目时,个人简历中的论文格式为准) |
(1) Gan Qu* et al., Oriented assembly of 2D metalpyridylporphyrinic framework to regulate the redox kinetics in Li-S batteries; Adv. Mater., 2025, 37, 2501869. |
(2) Gan Qu* et al., A Click Chemistry Strategy Toward Spin-Polarized Transition-Metal Single Site Catalysts for Dynamic Probing of Sulfur Redox Electrocatalysis; Adv. Mater. 2024, 36, 202409369. |
(3) Gan Qu* et al., Fundamental mechanistic insights on the peripherally substituted iron phthalocyanine selectively catalyzing the sulfur redox reactions; Energy Storage Mater., 2025, 77, 104157. |
(4) Gan Qu* et al., Quantum spin exchange interactions to accelerate the redox kinetics in Li-S batteries; Nano-Micro Lett., 2024, 16(1): 100. |
(5) Gan Qu et al., Tuning Fe-spin state of FeN4 structure by axial bonds as efficient catalyst in Li-S batteries, Energy Storage Mater.; 2023, 55: 490-497. |
(6) Gan Qu et al., Universal Triquinoxalinylene (3Q) Molecule Electrodes for Ultrafast and Ultrastable Li+ Storage; Energy Storage Mater. 2022, 46, 322-328. |
(7) Gan Qu* et al., Peripheral group-induced spin-state switch of metal macrocyclic molecule for enhanced redox kinetics in lithium-sulfur batteries; Chem. Eng. J. 2024, 491, 151990. |
(8) Gan Qu et al., Cs-induced phase-transformation of vanadium oxide for high performance zinc-ion batteries; Energy Environ. Mater. 2023, 6(4), e12502. |
(9) Gan Qu et al., Phase engineering of Mo-V oxides molecular sieves for zinc-ion batteries; Sci. China Mater. 2022, 65, 939-946. |
(10) Gan Qu et al., Vanadium Doping Enhanced Electrochemical Performance of Molybdenum Oxide in Lithium-Ion Batteries; Adv. Funct. Mater., 2019, 29(2): 1805227. |