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    Contact Information

  • Name:Wei Lu
  • Phone:86-13681845641
  • Fax:86-21-69585265
  • Email:weilu@tongji.edu.cn
  • Personal home page:
  • Title:

Research Fields:

Magnetic materials   Electromagnetic absorption materials   nanomaterials for Cancer therapy   Corrosion and protection

 

Current Courses:

Fundamentals of Functional Materials Processing
Fundamentals of Heat treatment
Advanced Processing of Metallic Materials
Materials Corrosion and Protection
Theory of Material Forming  

 

Projects:

1) Rare-earth-free MnBi permanent magnetic alloys for high temperature applications (supported by NSFC)
2) Structural health monitoring of composites based on stress-induced giant magneto-impedance effect (supported by NSFC)
3) Phase transformation and magnetic properties of Rare-earth-free MnAl permanent magnetic alloys (supported by NSFC)
4) Soft magnetic composites for the driving motors of electric vehicles (supported by STCSM and SAIC)
5) Surface modification of biodegradable Mg-based alloys for bone implants (supported by NSFC)
 

 

Publications:

1) Layered NiCo alloy nanoparticles nanoporous carbon composites derived from bimetallic MOFs with enhanced electromagnetic wave absorption performance, Carbon 154 (2019) 391-401
2) Enhanced electromagnetic wave absorption of nanoporous Fe3O4 @ carbon composites derived from metal-organic frameworks, Carbon, 2019.02, 142: 20-31
3) Effect of annealing on magnetic properties of Fe/Fe3O4 soft magnetic composites prepared by in-situ oxidation and hydrogen reduction methods, Journal of Alloys and Compounds 778 (2019) 712-720
4) Enhanced formation and improved thermal stability of ferromagnetic τ phase in nanocrystalline Mn55Al45 alloys by Co addition, Journal of Alloys and Compounds 783 (2019) 416-422
5) One-pot hydrothermal synthesis, in vitro biodegradation and biocompatibility of Sr-doped nanorod nanowire hydroxyapatite coatings on ZK60 magnesium alloy, Journal of Alloys and Compounds 799 (2019) 71-82
6) Microstructural evolution and phase transformation kinetics of MnBi Alloys, Journal of Alloys and Compounds 741 (2018) 951-956
7) Enhancing Corrosion Resistance, Osteoinduction, and Antibacterial Properties by ZnSr Additional Surface Modification of Magnesium Alloy, ACS Biomater. Sci. Eng. 2018, 4, 4289−4298
8) Coercivity enhancement and magnetization process in Mn55Bi45 alloys with refined particle size, Journal of Alloys and Compounds 744 (2018) 432-437
9) Pinning-dependent vortex wall oscillations in a one dimensional NiFe nanowire, Applied Physics Letters, 2017.10.16, 111(16)
10) High temperature exchange bias effect in melt-spun Mn(55)Bi(45)alloys , Applied Physics Letters, 2016.9.12, 109(11)
11) Effect of Ca/P ratio on the structural and corrosion properties of biomimetic CaP coatings on ZK60 magnesium alloy, Materials Science and Engineering: C, 2017.3.1, 72: 676~681
12) Quantitatively probing the magnetic behavior of individual nanoparticles by an AC field-modulated magnetic force microscopy, Scientific Reports, 2016.01.01, 6
13) Phase transformation kinetics and microstructural evolution of MnAl permanent magnet alloys, Journal of Alloys and Compounds, 2016.11.15, 685: 992~996
14) Low-energy mechanically milled tau-phase MnAl alloys with high coercivity and magnetization, Journal of Alloys and Compounds, 2016.8.5, 675: 163~167
15) Where does the toxicity of metal oxide nanoparticles come from: The nanoparticles, the ions, or a combination of both? , Journal of Hazardous Materials, 2016.5.5, 308: 328~334
16) Growth, in vitro biodegradation and cytocompatibility properties of nano-hydroxyapatite coatings on biodegradable magnesium alloys, Journal of Alloys and Compounds, 2016.7.5, 672: 366~373
17) Thermal stability, magnetic properties and GMI effect of Cr-doping amorphous CoFeSiB ribbons, Journal of Alloys and Compounds, 2015.2.15, 622: 500~503
18) Exchange spring in A1/L10 FePt composite and its application in magnetic force microscope, Applied Physics Letters, 2015, 106(8): 082404
19) Soft magnetic properties and giant magnetoimpedance effect in thermally annealed amorphous Co68Fe4Cr3Si15B10 alloy ribbons, Journal of Alloys and Compounds, 2015.7.25, 638: 233~238
20) Phase evolution and magnetic properties of FeCo films electrodeposited at different temperatures, Journal of Alloys and Compounds, 2015.7.15, 637: 552~556

 

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