姓名:王磊
性别:男
学位/职称:博士、副教授
出生年月:1987年06月
学科专业:0805材料科学与工程,0806Z1稀土工程,085601材料工程
联系方式:18870797997;E-mail:wanglei15526@163.com
讲授课程:
本科生课程:《固体物理》 ;研究生课程:《固体物理》 。
研究方向:
1、稀土永磁材料
2、软磁及电磁波吸收材料
3、钙钛矿型稀土-过渡金属氧化物磁性功能材料
主持承担科研项目及经费:
1、 晶格调控诱导(Tm,Yb)CrO3单相化合物交换偏置的室温转变及驱动机制研究,国家自然科学基金青年项目,项目经费:24万元(在研);
2、 高性能铁基吸波材料的研发与产业化,企业委托技术开发项目,项目经费:65万元(在研);
3、 高性能磁粉芯软磁材料的工艺探究和机理分析,企业委托技术开发项目,项目经费:60万元(在研);
4、 新型稀土复合软磁材料应用研究,企业委托技术开发项目,项目经费:61万元(结题);
5、 纳米合金/Nd-Fe-B复合永磁体的晶界优化及矫顽力增强机制研究,江西省自然科学基金面上项目,项目经费:10万元(在研)
6、 单相(Yb,Tm) CrO3稀土-过渡金属氧化物室温交换偏置效应的调控机制,江西省自然科学基金青年项目,项目经费:6万元(结题)
7、 纳米复合钕铁硼永磁材料应用研究,企业委托技术开发项目,项目经费:20万元(在研);
出版著作及代表性论文:
[1] Fenglan Long, Lei Wang*, Sajjad Ur Rehman, et al. Honeycomb-like structured ZnFe2O4@C derived from ZnFe2O4@ZIF-8 for electromagnetic wave absorption, Journal of Magnetism and Magnetic Materials 568 (2023) 170253.
[2] Fenglan Long, Lei Wang*, Sajjad Ur Rehman, et al. Double shell structured MnFe2O4@FeO/C derived from MnFe2O4@ZIF-8 for electromagnetic wave absorption, Journal of Alloys and Compounds 906 (2022) 164197.
[3] Lei Wang, Fenglan Long, Yang Chen, et al. Optimization of the microwave absorption properties of FeSiCr@Fe2O3 core-shell nanoparticles by controlling the thickness and crystallinity of Fe2O3 shell, Journal of the American Ceramic Society 105:6 (2022) 4171-4179.
[4] Qiulan Tan, Lei Wang*, Sajjad Ur Rehman, et al. Optimizing the microwave absorption properties of core–shell NiO@FeNiMo nanocomposites by regulating the oxide shell thickness, Journal of Magnetism and Magnetic Materials 544 (2022) 168669.
[5] Yang Chen, Lei Wang*, Sajjad Ur Rehman, et al. FeSiCr@ZnFe2O4 core-shell nanostructure and properties enhancement on microwave absorption, Journal of Magnetism and Magnetic Materials, 2021.
[6] Houdong Xiong, Lei Wang*, Sajjad Ur Rehman, et al. Carbon coated core-shell FeSiCr/Fe3C embedded in carbon nanosheets network nanocomposites for improving microwave absorption performance, Nano, 2020. (封面论文)
[7] Lei Wang*, Houdong Xiong, Sajjad Ur Rehman, et al. Optimized microstructure and ipedance matching for improving the absorbing properties of core-shell C@Fe3C/Fe nanocomposites, Journal of Alloys and Compounds, 2019.
[8] Lei Wang*, Houdong Xiong, Sajjad Ur Rehman, et al. Microwave absorbing property enhancement of FeSiCr nanomaterials by regulating nanoparticle size, Journal of Alloys and Compounds, 2019.
[9] Lei Wang, L.L. Zhang, X. Zhang, et al. Tunable reversals of magnetization and exchange bias of perovskite YbCr1-xFexO3 (x=0-0.15), Ceramics International, 2019.
[10] Lei Wang, Qichen Quan, Lili Zhang, et al. Microwave absorption of NdFe magnetic powders tuned with impedance matching, Journal of Magnetism and Magnetic Materials, 2018.
[11] Lei Wang, Qichen Quan, Lili Zhang, et al. Microstructures, magnetic properties and coercivity mechanisms of Nd-Ce-Fe-B based alloys by Zr substitution, Journal of Applied Physics, 2017.
[12] Qichen Quan, Lili Zhang, ..., Lei Wang*, et al. Effect of Nb doping on the microstructure and magnetic properties of Nd-Ce-Fe-B alloy, Journal of Magnetism and Magnetic Materials, 2017.
[13] Lei Wang, G.H. Rao*, X. Zhang, et al. Reversals of magnetization and exchange-bias in perovskite chromite TmCrO3, Ceramics International, 2016.
[14] Lei Wang, S.W. Wang, X. Zhang*, et al. Reversals of magnetization and exchange-bias in perovskite chromite YbCrO3, Journal of Alloys and Compounds, 2016.
科研成果(专利):
1、 授权专利:一种高性能稀土双合金磁体及其制备方法,专利号:202010116904.6;
2、 授权专利:一种高性能双主相复合稀土永磁体材料及其制备方法,专利号:ZL202010124048.9;
3、 授权专利:一种核壳结构的坡莫合金磁性纳米吸波材料及其制备方法,专利号:ZL201811293934.3;
4、 授权专利:具室温交换偏置的单相稀土氧化物陶瓷材料及其制备方法,专利号:ZL201711468592.X;
5、 授权专利:具有交换偏置反转的稀土氧化物陶瓷材料及其制备方法,专利号:ZL201711468612.3;
6、 授权专利:一种碳包覆FeSiCr磁性纳米吸波材料及其制备方法,专利号:ZL201810636693.1。