硕士生导师简介
基本信息:
李重阳,女,汉,1988年9月,讲师、博士,硕士生导师。
招生专业:085800能源动力(专业学位),方向:02清洁能源技术;03核能工程。
研究领域:
(1)核效应分析技术-正电子湮没谱学
(2)微结构表征
(3)材料抗辐照
个人学习工作经历:
1.2006.9-2010.6洛阳师范学院,物理学专业,学士
2.2010.9-2012.6武汉大学,凝聚态物理专业,硕士
3.2013.9-2016.6武汉大学,粒子物理与原子核物理专业,博士
承担的教学任务:
承担《电工电子技术》、《核反应堆燃料管理与优化》等本科教学任务,承担《新能源材料与器件技术》等研究生教学任务。
承担的教学科研项目:
近年来主持及参与国家级、省部级、教育厅科技项目10项。
[1]用正电子湮没表征ZIFs晶体的孔结构及其对气体吸附与储存性能的影响,12205100,国家自然科学青年基金,主持,2023.01-2025.12,30万;
[2]聚(3,4-乙烯二氧噻吩)基热电材料的微结构及其热电性能研究,23B140002,河南省高等学校重点科研项目,主持,2023.01-2024.12;
[3]基于不锈钢网柔性基底高效氧化锌光阳极的制备及其光电化学制氢性能研究,51702097,国家自然科学青年基金,参与,2017.1-2019.12,25;
[4]低温下正电子微探针检测铝合金中溶质原子团簇及位错缺陷的灵敏度增强效应研究,11665017,国家自然科学地区科学基金,参与,2017.1-2020.12;
[5]用正电子湮没研究热电高分子复合材料的自由体积和界面结构及其对热电性能的影响,11575131,国家自然科学面上基金,参与,2016.01-2019.12;
[6]多孔催化剂孔结构及表面活性物质分散状态的正电子湮没研究,11475130,国家自然科学面上基金,参与,2015.01-2018.12;
[7]用正电子湮没谱学研究热电材料的缺陷及其对热电性能的影响,11275143,国家自然科学面上基金,参与,2013.01-2016.12。
主要论著与学术论文(填写代表性论文和论著):
[1]李重阳,李梦德,汪美等. ZIFs纳米晶体中电子偶素的自旋转换[J].物理学报202271(15): 157801.(SCI三区/中文EI,编辑推荐文章)
[2]Yang Wentao, Zhao Bin*,Li Chongyang, et al. Enhanced gas molecules adsorption of γ-graphyne doped with Fe atom: A first-principles study[J].Applied Surface Science 2022601: 154083.(SCI一区top)
[3]Liu Xiaohan+, Wang Jiajun+,Li Chongyang*, et al. CO oxidation on graphene/Y2C electride heterojunction[J].Applied Surface Science 2022599:153833.(SCI一区top+ Co-first author)
[4]李重阳*,赵宾*,张俊伟.电子偶素在OMC/SBA-15、OMC@SBA-15及CuO@SBA-15催化剂中的化学猝灭[J].物理学报202271(6): 067805.(SCI三区)
[5]Li Chongyang, Shang Cui, Zhang Gang, et al. Effect ofbimetallic dimer-embedded TiO2(101) surface on CO2reduction: The First-Principles Calculation[J].Materials 202215(7): 2538.(SCI三区)
[6]李重阳*,宋小勇,陈莉莉等. MWCNT/PEDOT复合材料的微观结构和热电性能[J].复合材料学报202240(2): 863-874.(中文EI)
[7]Li Chongyang*, Tian Shujian, Zou Bing,et al. Porous carbon derived from poplar catkins and its high-performance CO2capture[J].Journal of Wuhan University of Technology-MaterialsScienceEdition 2022Accepted (ID: 2021-00453).(SCI四区)
[8]李重阳,王飞跃,陈志权.用正电子湮没研究煅烧对SBA-15热稳定性的影响[J].核技术202245(6): 060201.(北大核心)
[9]Zhou Bo+, Chen Lili+,Li Chongyang, et al. Significant enhancement in thermoelectric performance of aluminum doped ZnO tuned by pore structure[J].ACS Applied Materials & Interfaces202012: 51669−51678.(SCI一区top+ Co-first author)
[10]Xu Juan,Li Chongyang, Chen Lili, et al. Anchoring carbon layers and oxygen vacancies endow WO3-x/C electrode with high specific capacity and rate performance for supercapacitors[J].RSC Advances 20199(49): 28793-28798.(SCI三区)
[11]Liu Liangliang,Li Chongyang, Jiang Man, et al. Mechanism of H adatoms improving the O2reduction reaction on the Zn-modified anatase TiO2(101) surface studied by first principles calculation[J].Dalton Transactions201847(22): 7541-7550.(SCI二区)
[12]Zhou Bo,Li Chongyang, Qi Ning, et al. Pore structure of mesoporous silica (KIT-6) synthesized at different temperatures using positron as a nondestructive probe[J].Applied Surface Science, 2018, 450: 31-37.(SCI一区top)
[13]Li Chongyang, Zhao Bin, Zhou Bo, et al. Effects of electrical conductivity on the formation and annihilation of positronium in porous materials[J].Physical Chemistry Chemical Physics201719(11): 7659-7667.(SCI二区top)
[14]Li Chongyang, Qi Ning, Liu Zhewen, et al. Effect of synthesis temperature on the ordered pore structure in mesoporous silica studied by positron annihilation spectroscopy[J].Applied Surface Science2016363:445-450.(SCI一区top)
[15]Li Chongyang, Zhang Hongjun, Chen Zhiquan. Reaction between NiO and Al2O3in NiO/γ-Al2O3catalysts probed by positronium atom[J].Applied Surface Science2013266:17-21.(SCI一区top)
[16]李重阳,邱诚,柳丹等. Fe离子注入ZnO产生的缺陷及磁学性能研究[J].武汉大学学报(理学版)201359(4):393-397.(北大核心)
联系方式:
电话:15729362551
电子邮箱:lichongyang@ncwu.edu.cn
联系地址:河南省郑州市金水区北环路36号华北水利水电大学