
一、简介
陈晓玉,中共党员,讲师,理学博士。2025年毕业于河北大学物理科学与技术学院物理学专业,获理学博士学位;2026年1月入职安阳师范学院。主要从事锌离子电池、光电储能电池研究,围绕光响应锌离子电池、电极材料调控及光生载流子迁移等开展科研工作。以第一作者身份在Energy Storage Materials、Composites Part B、Acta Materialia等国际学术期刊发表SCI论文7篇。相关研究形成了光能响应与电化学储能耦合方面的研究积累,为无人机及低空感知、监测等装备的安全储能与光辅助供能研究提供交叉技术支撑。
二、擅长领域
面向无人机及低空监测终端的安全储能与光辅助供能需求,主要从事锌离子电池、光响应锌离子电池电极材料设计与性能调控、光生载流子迁移与电化学储能耦合等研究。现有研究为低空装备储能单元及光辅助供能技术提供材料与机理层面的技术支撑。
三、主讲课程
计算方法、模拟电子技术。
四、代表性教科研成果
代表性科研论文
1. Xiaoyu Chen, Aijia Zhang, Hao Zou, Ling Li*, Qiancheng Zhu*, Wenming Zhang*. Defect engineering modulated MoSe2 cathode achieves highly effective photo-responsive zinc ion battery, Energy Storage Materials, 2024, 70, 103457.
2. Xiaoyu Chen, Yingdi Zhou, Mengyu Liu, Ling Li, Song Chen, Wenming Zhang*. Bridge structure boosts the topological network connectivity of vanadium oxide for photo-responsive zinc-ion batteries, Composites Part B, 2025, 307, 112878.
3. Xiaoyu Chen, Yifan Jiang, Hang Li, Ling Li*, Qiancheng Zhu*, Wenming Zhang*. Boosting photon-generated carrier migration process through intercalation strategy for highly photoelectric performance photo-responsive zinc-ion batteries, Acta Materialia, 2025, 292, 121089.
4. Xiaoyu Chen, Shuanghong Xia, Tianyu Tan, Yajing Zhu, Ling Li*, Qiancheng Zhu*, Wenming Zhang*. In situ growth of MOF-derived nitrogen-doped carbon nanotubes on hollow MXene spheres for K-ion storage, Inorganic Chemistry Frontiers, 2023, 10, 4414-4424.
5. Xiaoyu Chen, Yifeng Li, Ling Li, Qiancheng Zhu*, Baolai Liang, Jie Zhao*, Wenming Zhang*. Co/Zn bimetallic organic framework nanoparticles on carbon fibers as cathode for a high-performance rechargeable aqueous Zn-ion hybrid supercapacitor, Scripta Materialia, 2023, 225, 115171.
6. Xiaoyu Chen, Ranran Zhang, Hao Zou, Ling Li*, Qiancheng Zhu*, Wenming Zhang*. A rational proton compensation strategy of polyaniline-MnO2 hybrid structure for promoting dual ion storage of Zn-ion battery, Scripta Materialia, 2024, 241, 115893.
7. Xiaoyu Chen, Chenlong Hao, Mengyao Shang, Xiangxin Li*, Shuo Wang*, Wenming Zhang*. Enhanced surface stability of K0.27MnO2⋅0.54H2O cathode materials with LiF/LixPFyOz coating for potassium-ion batteries, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 700, 134772.