Mi Wenbo
School
School of Science
Professional Title
Professor
Discipline
Condensed Matter Physics/Materials Physics and Chemistry
Contact Information
27406991
miwenbo@tju.edu.cn
Level 2, Building 32, Beiyangyuan Campus, Tianjin University, No. 135, Yaguan Road, Haihe Education Park, Jinnan District, Tianjin 300354, P.R. China
300354
Education Background
- Doctoral degree| Tianjin University| Materials physics and chemistry| 2006
- Master’s Degree| Tianjin University| Materials physics and chemistry| 2004
- Bachelor’s Degree| Tianjin University| Department of Applied Physics| 2001
Research Interests
- Spintronics Materials, Physics and Devices
- Design and Electronic Structure of Novel Low Dimensional Materials
Professional Membership
- Member of Chinese Physical Society
- Member of Chinese Vacuum Society
- Member of Chinese Electronics Society
- Director of Tianjin Vacuum Society
Positions & Employments
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2013.7-Now
Department of Applied Physics | Tianjin University | Professor  -
2014.4-2014.6
Department of Physics | King Abdullah University of Science and Technology | Visiting Scholar  -
2008.7-2008.9
Department of Physics | The Hong Kong University of Science and Technology (HKUST) | Visiting Scholar  -
2008.7-2013.6
Department of Applied Physics | Tianjin University | Associate Professor  -
2010.5-2011.5
Center for Solar and Alternative Energy | King Abdullah University of Science and Technology | Postdoc Fellow  -
2006.3-2008.6
Department of Applied Physics | Tianjin University | Assistant Professor 
Academic Achievements
- Papers
- [1] Ye CY#, Jiang JW#, Zou SL, Mi WB*, Xiao Y*, Core-shell 3D perovskite nanocrystals with chiral-induced spin selectivity for room-temperature spin light-emitting diodes, J. Am. Chem. Soc. 144 (2022) 9707-9714. (Inside Cover Story)
- [2] Pan L#, Ai MH#, Huang CY#, Yin L, Liu X, Zhang RR, Wang SB, Jiang Z, Zhang XW, Zou JJ*, Mi WB*, Manipulating Spin Polarization of Titanium Dioxide for Efficient Photocatalysis, Nat. Comm. (2020).
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- [3] Jiang JW, Li R, Mi WB*, Exchange interactions in 1T-VSe2 monolayer and their modulation by electron doping via alkali metal adsorption and electridesubstrate, Mater. Horiz. 9 (2022) 2785-2796.
- [4] Jiang J, Mi W*, Two-dimensional magnetic Janus monolayers and their van der Waals heterostructures: A review on recent progress, Mater. Horiz. 10 (2023) 788-807.
- [5] Xu Y, Mi W*, Chiral-induced Spin Selectivity in Biomolecules, Organic-inorganic Hybrid Perovskites and Inorganic Materials: A Comprehensive Review on Recent Progress, Mater. Horiz. 10 (2023) 1924-1955.
- [6] Wang YD, Mehmood N, Hou ZP*, Mi WB*, Zhou GF, Gao XS*, Liu JM,Electric Field-Driven Rotation of Magnetic Vortex Originating from Magnetic Anisotropy Reorientation, Adv. Electron. Mater. 8 (2022) 2100561. (Back Cover Story)
- [7] Guo L, Li R, Jiang JW, Zou JJ, Mi WB*, Electrocatalytic Performance of Mn-adsorbed g-C3N4: A First-Principles Study, J. Mater. Chem. A (2021) 26266-26276.
- [8] Li J, Pei Q, Wang R, Zhou Y, Cao Q, Wang DH*, Mi WB*, Du YW, Enhanced Photocatalytic Performance through Magnetic Field Boosting Carrier Transport, ACS Nano (2018).
- [9] Qi YH, Jiang JW, Liang XC, Ouyang SX*, Mi WB*, Ning SB, Zhu YY, Zhao L, Ye JH, Fabrication of Black In2O3 with Dense Oxygen Vacancy through Dual Functional Carbon Doping for Enhancing Photothermal CO2 Hydrogenation, Adv. Funct. Mater. (2021).
- [10] Feng C*, Meng F, Wang YD, Jiang JW, Mehmood N, Cao Y, Lv XW, Yang F, Wang L, Zhao YK, Xie S, Hou ZP*, Mi WB*, Peng Y, Wang KY, Gao XS, Yu GH, Liu JM, Field-Free Manipulation of Skyrmion Creation and Annihilation by Tunable Strain Engineering, Adv. Funct. Mater. (2021).
- [11] Feng C*, Wang SR, Yin L, Li XJ, Yao MK, Yang F, Tang XL, Wang L, Mi WB*, Yu GH*, Significant strain induced orbital reconstruction and strong interfacial magnetism in TiNi(Nb)/ferromagnet/oxide heterostructures via oxygen manipulation, Adv. Funct. Mater. (2018).
- [12] Wang SR, Yao MK, Li ZR, Feng C*, Wang L, Tang XL, Kang P, Zhang B, Mi WB*, Yu GH*, Nitrogen tuned charge redistribution and orbital reconfiguration in Fe/MgO interface for significant interfacial magnetism tunability, Adv. Funct. Mater. (2019).
- [13] Li XJ#, Yin L#, Lai ZX, Wu M, Sheng Y, Zhang L, Sun YW, Chen SL, Li XM, Zhang JM, Li YH, Liu KH, Wang KY, Yu DP, Bai XD*, Mi WB*, Gao P*, Atomic Originof Spin-Valve Magnetoresistance at the SrRuO3 Grain Boundary, Natl. Sci. Rev. (2020).
- [14] Qi SM, Jiang JW, Wang XC*, Mi WB*, Valley Polarization, Magnetic Anisotropy and Dzyaloshinskii-Moriya Interaction of Two-Dimensional Graphene/Janus 2H-VSeX (X = S, Te) Heterostructures, Carbon (2021).
- [15] Chen X, Mi WB*, Mechanically Tunable Magnetic and Electronic Transport Properties of Flexible Magnetic Films and Its Heterostructures for Spintronics, J. Mater. Chem. C (2021).
- [16] Li R, Jiang JW, Shi XH, Mi WB*, Bai HL*, Two-dimensional Janus FeXY (X, Y=Cl, Br and I, X≠Y) monolayers: Half-metallic ferromagnets with tunable magnetic properties by strain, ACS Appl. Mater. Interfaces (2021).
- [17] Jiang JW, Liu X, Li R, Mi WB*, Topological Spin Textures in a Two-Dimensional MnBi2(Se, Te)4 Janus Material, Appl. Phys. Lett. (2021).
- [18] Li R, Jiang JW, Mi WB*, Bai HL*, Room Temperature Spontaneous Valley Polarization in Two-dimensional FeClBr Monolayer, Nanoscale (2021).
- Books
- [1] 《High Spin Polarized Magnetic Materials》, in Chinese Edited by Wenbo Mi, published in November, 2015, ISBN: 978-7-5618-5453-2.
- [2] 《The Basis of Spintronics》, in Chinese Edited by Wenbo Mi, Published in May, 2013, ISBN: 978-7-5618-4659-9.
- Patents
- [1] CoFeB/SiO2/n-Si heterostructure with a large magnetoresistance and its fabrication method
- [2] GdN films with large magnetoresistance and its preparation method
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- [3] Resistive switching of CoFe2O4 nanofilms and its fabrication method
- [4] Fe3O4/p-Si with current modulated magnetoresistance and fabrication method
- [5] Epitaxial Ti0.53Cr0.47N films with low-temperature magnetoresistance and its fabrication method
- [6] Preparation method of the Cr-doped TiN diluted magnetic semiconductor films
- [7] Preparation method of the iron nitride films with large Hall effects
- [8] Device and operating method for the fabrication of epitaxial Fe3O4 films using facing target sputtering
Team
Spintronic Physics, Materials and Devices
We focus on the spintronic physics, materials and devices.
- Honors & Awards
- [1] 1st Level of 131 talents of Tianjin City (2014)
- [2] Tianjin Youth Science and Technology Reward (Nomination) (2014)
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- [3] Peiyang Reserved Academic Program of Tianjin University (2013)
- [4] 2nd Level of 131 talents of Tianjin City (2013)
- [5] Program for New Century Excellent Talents in University, Ministry of Education (2013)
- [6] 3rd Level of 131 talents of Tianjin City (2012)
- [7] Peiyang Elite Scholar Program of Tianjin University (2012)
- [8] Second Prize of Tianjin Nature Science Award 2012 (No. 2)
- [9] 15th top 10 outstanding young faculty of Tianjin university (2009)