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个人简介

王涛,男,1979年2月生,现为兰州大学物理科学与技术学院教授、博士生导师。2005年兰州大学物理科学与技术学院凝聚态物理专业博士毕业,师从李发伸教授,2006年4月—2009年3月在日本秋田大学风险投资实验室做博士后研究,2009年4月回到兰州大学磁学与磁性材料教育部重点实验室工作。从研究生开始至今一直致力于磁学与磁性材料的研究,先后从事材料的穆斯堡尔谱学、垂直磁记录纳米材料的制备与反磁化机制、软磁材料的高频电磁特性等方面的研究。目前致力于二维高频软磁材料、高性能隐身材料、高效抗肿瘤磁热纳米材料的研制与开发。先后承担了多项国家部委重点研究项目,主持了多项国家自然科学基金项目,1项中央高校重点项目,以及多项横向课题。现为基金委评审专家,多个国际SCI杂志审稿专家,2005年以来已公开发表SCI研究论文90多篇。

研究领域

1.二维磁矩材料及在新能源器件中的应用研究 2.隐身材料及设计 3.用于抗肿瘤磁热疗磁性纳米材料的前期研究

近期论文

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1.G. W. Wang, X. L. Li, P. Wang, J. M. Zhang, D. Wang, L. Qiao, T. Wang*, F. S. Li,Microwave absorption properties of flake-shaped Co particles composites at elevated temperature (293-673 K) in X band, J. Magn. Magn. Mater. 456, 92 (2018). 2.Y. W. Chen, Y. Wang*, P. Wang, T. Y. Ma, T. Wang*, Hyperthermia properties of hyaluronic acid-coated La0.7Sr0.3-xBaxMnO3 nanoparticles, J. Mater. Chem. B, 6, 2126 (2018). 3.J. Y. Jiao, T. Y. Ma, Z. W. Li*, L. Qiao, Y. Wang, T. Wang*, F. S. Li, Effective reduction of the coercivity for Co72Pt28 thin film by exchange coupled Co81Ir19 soft layer with negative magnetocrystalline anisotropy, J. Phys. D: Appl. Phys. 51, 055507 (2018). 4.T. Y. Ma,J. Y. Jiao,Z. W. Li,L. Qiao,T.Wang*,F. S Li,Micrometer thick soft magnetic films with magnetic moments restricted strictly in plane by negative magnetocrystalline anisotropy,J. Magn. Magn. Mater. 444, 119 (2017). 5.B. Y. Zhou,Y. F. Wang, F. S. Li, L. Y. Tang,T. Wang, L. Qiao*, F. S. Li,Submicron carbonyl iron particles as an efficient microwave absorber in the low frequency band,J. Phys. D: Appl. Phys. 47, 475001 (2017). 6.Y. B.Zhang, P. Wang, T. Y. Ma; Y. Wang, T. Wang*,High-frequency electromagnetic properties of soft magnetic Nd2Co17 micron flakes fractured along c crystal plane with natural resonance frequency exceeding 10 GHz, Appl. Phys. Lett.108, 092406 (2016). 7.T. Wang*, P. Wang, Y. Wang, L. Qiao, A broadband far-field microwave absorber with a sandwich structure,Materials & Design, 95, 486 (2016). 8.王涛*,张峻铭,王鹏,乔亮,唐丽云,薛德胜,李发伸, 吸波材料吸波机制及吸波剂性能优劣评价方法(专家论坛), 磁性材料及器件, 6, 7(2016). 9.F. Xu, S. Zhang, D. Z. Yang,T. Wang*, and F. S. Li, High-frequency of oriented hcp-Co1-xIrx(0.06≤x≤0.24) soft magnetic films, J. Appl. Phys. 117, 17B725 (2015). 10.Y. B. Zhang, P. Wang, Y. Wang, L. Qiao, T. Wang, F. S. Li, Synthesis and excellent electromagnetic wave absorption properties of parallel aligned FeCo@C core-shell nanoflake composites, J.Mater. Chem. C, 3, 10813 (2015). 11.T. Wang*, F. Xu, L. Y. Tang, L. Qiao, and F. S. Li, Study on matching map for the absorber filled by metallic magnetic particles, J. Appl. Phys. 116, 173912 (2014). 12.T. Wang*, H. D. Wang, X. Chi, R. Li, J. B. Wang, Synthesis and microwave absorption properties of Fe-C nanofibers by electrospinning with disperse Fe nanoparticles parceled by carbon, Carbon, 74, 312 (2014). 13.T. Wang*, C. Y. Pan, Y. Wang, G. G. Tan, H. D. Wang, R. Liu, F. S. Li, Improvement of absorption performance for Co2Z barium ferrite composite by increasing the reflected electromagnetic wave from air-absorber interface, J. Mag. Magn. Mater. 354, 12-16 (2014). 14.T. Wang*, L. Qiao, R. Han, Z. Q. Zhang, The origin of reflection loss peaks in the double-layer electromagnetic wave absorber, J. Magn. Magn. Mater. 324, 3209-3212 (2012). 15.R. Han, H. B. Yi, W. L. Zuo,T. Wang, L. Qiao, F. S. Li*, Greatly enhanced permeability for planar anisotropy Ce2Fe17N3-δcompound with rotational orientation in various external magnetic fields, J. Magn. Mater. Mater. 324, 2488-2491 (2012). 16.X. Yang, L. Q. Gong, J. Q, Wei, L. Qiao,T. Wang*, and F. S. Li, Temperature effect o high-frequency magnetic properties of Fe-Co films prepared by electrodeposition, J. Phys. D: Appl. Phys. 43, 215002 (2010). 17.Y. Yang, C. L. Xue, Y. X. Xia,T. Wang, and F. S. Li, Synthesis and microwave absorption properties of FeCo nanoplates, J. Alloys Compd.493, 549–552 (2010). 18.W. F. Yang, L. Qiao, J. Q. Wei, Z. Q. Zhang,T. Wang*, and F. S. Li, Microwave permeability of flake-shaped FeCuNbSiB particle composite with rotational orientation, J. Appl. Phys.107, 033913 (2010). 19.H. X. Han, R. L. Liu, Q. F. Liu, J. B. Wang,T. Wang*, and F. S. Li, Micromagnetic simulation of the magnetic spectrum of two magnetostatic coupled ferromagnetic strips, Physica B 405, 1172–1175 (2010).

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