个人简历
基本情况:史振华,男,博士研究生,副教授
教育经历: 2009.09–2014.06 兰州大学 凝聚态物理博士。2005.09–2009.07 兰州大学 物理学学士
研究方向:铁电材料对磁性材料磁性能的调制;纳米材料的微波吸收性能。
代表性研究成果:
1. 主持:镍铁氧体与钛酸钡中磁电效应导致的磁性改变与磁电阻效应的研究(国家自然科学基金青年基金,11904275),2020.01-2022.12。
2. 主持:Fe304和MoSe2及其复合材料中表面微结构与化学状态对微波吸收性能的调制(陕西省自然科学基础研究计划一般项目(面上),2025JCYBMS-102),2025.01-2026.12。
3. 主持:铁氧体与钙钛矿构成的纳米异质结构中的磁电效应(陕西省教育厅专项科研计划项目,19JK0413),2019.01-2020.12。
4. 参与:参与国家自然科学基金项目3项,参与其他项目3项。
发表论文:
[1] Shi, ZH; Zhang, J; Gao, DQ; Zhu, ZH; Yang, ZL; Zhang, ZP. (2020). Giant magnetoelectric coupling observed at high frequency in NiFe2O4 –BaTiO3 particulate composite. RSC Advances, 10(45), 27242-27248.
[2] Zhenhua Shi, Jing Zhang, Daqiang Gao, Zhonghua Zhu, Zhaolong Yang, Zhipeng Zhang and Desheng Xue. Magnetic Resonance of the NiFe2O4 Nanoparticles in the Gigahertz Range. Nanoscale Res. Lett. 2013,8:404.
[3] Sun, Y; Wang, YJ; Ma, HJ; Zhou, Y; Xing, HN; Feng, W; Feng, J; Shi, ZH; Zong, Y; Li, XH. (2021). Fe3C nanocrystals encapsulated in n-doped carbon nanofibers as high-efficient microwave absorbers with superior oxidation/corrosion resistance. Carbon 178(1), 515-527.
[4] Sun, Y; Deng, X; Zong, Y; Li, XH; Zhang, JW; Feng, J; Chi, X; Shi, ZH; Zheng, XL; Peng, Y. (2021). Cation ratio and oxygen defects for engineering the magnetic transition of monodisperse nonstoichiometric zinc ferrite nanoparticles. Sci. China Mater. 64(8), 2017–2028.
[5] Zhang, ZM; Sun, HN; Li, JF; Shi, ZH; Fan, MH; Bian, HQ; Wang, T; Gao, DQ. (2021). S-doped CoMn2O4 with more high valence metallic cations and oxygen defects for zinc-air batteries. Journal of Power Sources 491, 229584.
[6] Feng, W; Zhou, Y; Xing, HN; Chang, S; Feng, J; Shi, ZH; Zong, Y; Zhu, XH; Li, XH; Zheng, XL. (2021). Hydrothermal synthesis of nitrogen-doped graphene as lightweight and high-efficient electromagnetic wave absorbers. J Mater Sci: Mater Electron 32(21), 26116–26125.
[7] Yang, XF; Zhou, Y; Xing, HN; Wang, HP; Feng, W; Feng, J; Zhu, XH ; Shi, ZH; Zong, Y; Li, XH; Zheng, XL. (2022). MIL-88B (Fe) driven Fe/Fe3C encapsulated in high-crystalline carbon for high-efficient microwave absorption and electromagnetic interference shielding. Journal of Physics D: Applied Physics 55(14), 145003。
电子邮箱:shizhenhua@xatu.edu.cn