
一、 个人简介
高向阳,博士,副研究员(直聘),硕士生导师。从事能源存储与转化及关键材料研究,在Advanced Functional Materials,Nano Energy,Chemical Engineering Journal 等期刊发表20余篇论文,主持国家自然科学基金青年科学基金项目(C),国家资助博士后研究人员计划项目,博士后面上项目和河南省自然科学基金青年项目。
二、联系方式
电子邮箱:gaoxy2023@zzu.edu.cn
通讯地址:郑州市高新区科学大道100号
三、教育及工作经历:
2023.08-至今 郑州大学力学与安全工程学院 副研究员(直聘)
2020.09-2023.06 武汉大学物理科学与技术学院 博士
2017.09-2020.06 郑州大学化工与能源学院 硕士
四、研究领域:
安全储能、超级电容器、新型自供电能源系统、柔性电子器件、功能界面材料设计与合成、电极界面设计及电化学机理研究
欢迎具有安全、力学、材料、化学、电子、机械等相关专业背景的同学加入!
五、荣誉与奖励
1. 2026年度河南省教育厅科技成果奖一等奖(3/6)
2. 2024年度河南省教育厅优秀科技论文奖一等奖(1/2)
六、代表性科研项目 (主持)
1. 国家自然科学基金青年科学基金项目(C) 2027.01-2029.12
2. 国家资助博士后研究人员计划 2025.01-2026.12
3. 中国博士后面上项目 2025.01-2026.12
4. 河南省自然科学基金青年项目 2025.01-2026.12
5. 横向课题(20260559A) 2026.07-2029.07
6. 郑州大学“求是计划”经费 2024.01-2026.12
七、代表性论文(第一/通讯)
1. N-doped carbon-stabilized CoSe/NiSe2 heterojunction toward high-performance supercapacitors and photorechargeable power systems, Advanced Functional Materials, 2026, 36, e75308. (中科院一区,IF=19.9)
2. Cu2O@CeO2 heterostructure nanozyme with synergistic amplification effect-enhanced immunoassay for sensitive detection of Salmonella in food, Current Research in Food Science, 2026, 13, 101544. (中科院一区,IF=7.7)
3. Halloysite nanotubes supported Co2P bridged by carbon dots for enhanced hydrogen evolution from ammonia borane, Chemical Engineering Journal, 2024, 483, 149332. (中科院一区,IF=13.2,ESI高被引论文)
4. Robust dual-heterojunction Pt/CeO2-Ni(OH)2 bifunctional electrocatalyst toward efficient overall water splitting, Journal of Alloys and Compounds, 2026, 1080, 190462. (中科院二区, IF=6.7)
5. Ruthenium single atom anchored on Co3O4 nanowires toward efficient nitrate electrochemical to ammonia, Applied Surface Science, 2026, 738, 166945. (中科院二区, IF=6.6)
6. Dual redox active sites N-C@Ni2P/NiSe2 heterostructure supercapacitor integrated with triboelectric nanogenerator toward efficient energy harvesting and storage. Advanced Functional Materials, 2022, 32, 2204833 (中科院一区,IF=19.9)
7. Nickel-carbon composites toward supercapacitor and self-charging systems: A review,Fuel, 2025, 381, 133639. (中科院一区,IF=7.8)
8. Heterointerface engineering and piezoelectric effect enhanced performance of self-charging supercapacitors power cell. Nano Energy, 2022, 91, 106701. (中科院一区,IF=17.1)
9. NiCoP nanowire@NiCo-layered double hydroxides nanosheet heterostructure for flexible asymmetric supercapacitors. Chemical Engineering Journal, 2020,384,123373. (中科院一区TOP,IF=12.5,ESI高被引论文)
10. Decoration of NiCoP nanowires with interlayer-expanded few-layer MoSe2 nanosheets: a novel electrode material for asymmetric supercapacitors. Chemical Engineering Journal, 2020, 395, 125058. (中科院一区,IF=12.5)
11. High-efficiency self-charging power systems based on performance-enhanced hybrid nanogenerators and asymmetric supercapacitors for outdoor search and rescue. Nano Energy, 2022, 92, 106788. (中科院一区,IF=17.1)