新闻快讯:

彭海军

发布时间:2024/05/08    浏览次数:25
初审: 复审: 终审:

博士毕业于西北工业大学材料科学与工程学院材料学专业,现任珠海科技学院生命科学学院新能源材料与器件专任教师。于2020年到2023年在中南大学材料科学与工程学院博士后科研流动站从事博士后研究。在硕博期间,掌握了真空热压烧结法制备合金块体,陶瓷块体及粉体技术,掌握并熟悉了机械合金化的粉体处理方法以及力学性能的测试和分析方法。对TiAl合金和V2AlCMAX)陶瓷材料的制备工艺具有设计及改性的能力,对二维类石墨烯层状纳米材料MXene的制备和性能具有初步的探索。目前主要研究方向为水系可充电电化学储能。研究生和博士后期间,在Advanced Energy MaterialsIF = 27.8)、MatterIF = 19.6)、RSC Advances等国际期刊上以第一/通讯作者发表论文7篇。

教学工作(所授课程):储能科学与技术、半导体材料

科研方向:绿色可持续、生物相容性锌离子电池

主持科研项目:

高安全水系锌离子电池用稀土基锌合金负极与复合聚合物电解质协同效应研究,国家自然科学基金面上项目(52172263),2022-01-01-2025-12-31, 58万元,,参与。

代表性论文:

1.Haijun Peng, Kaishan Xiao, Siyu Tian, et. al. Solvation modulation and reversible SiO2-enriched interphase enabled by deep eutectic sol electrolytes for low-temperature zinc metal batteries. Advanced Energy Materials, 2024, 2303411. (IF = 27.8)

2.Haijun Peng, Yun Fang, Jinzhe Wang, et. al. Constructing fast ion conductive disordered interphase for high performance zinc ion and zinc iodine batteries. Matter 2022, 5, 1-16. (IF = 19.967)

3.Haijun Peng, Huiqing Fan, Chenhui Yang, et. al. Ultrathin δ-MnO2 nanoflakes with Na+ intercalation as a high-capacity cathode for aqueous zinc ion battery. RSC Advances 2020, 10, 17702-17712. (IF =3.049)

4.Haijun Peng, Huiqing Fan, Jianan Sui, et. al. Sodium in situ intercalated ultrathin δ-MnO2 flakes electrode with enhanced intercalation capacitive performance for asymmetric supercapacitors. Chemistry Select, 2020, 5, 869-874. (IF = 1.716)

5.Haijun Peng, Huiqing Fan, Weijia Wang, et. al. Templated manganese oxide by pyrolysis route as a promising candidate cathode for asymmetric supercapacitors. Journal of Electroanalytical Chemistry 2019, 843: 54-60. (IF =3.218)