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Isaac Scientific Publishing
Journal of Advances in Applied Physics
Prof. Jiabao Yi,  School of Materials Science and Engineering, UNSW, Australia
School of Materials Science and Engineering,
UNSW, Sydney, 2052, Australia,
Research Interests
• Spintronics and oxide electronics materials
• 2D materials
• Soft and hard magnetic materials
• Magnetic materials for bioapplications
• X-ray based synchrotron techniques (XAS, XMCD, X-ray diffraction)
• Neutron scattering and polarized neutron reflectometry
• Moun spin relaxation and positron annihilation spectroscopy
Selected Publication List
• X. L. Liu, C.T. Ng, P. Chandrasekharan, H. T. Yang, Y.B. Lv, W. Xiao, J.B. Yi, H. Zhang, K.H. Chuang, B.H. Bay, J. Ding and H.M. Fan, “ Fe0.6Mn0.4O Nanoflowers: A New class of Magnetic Theranostic Platform for in-vivo T1-T2 Dual-mode Magnetic Resonance Imaging and Magnetic Hyperthermia Therapy” “Advanced healthcare materials (In press).
• Y.R. Wang, P. Anh, S. Li and J.B. Yi, “Electronic and Magnetic Properties of Transition-Metal Doped Monolayer Black Phosphorus by Defect Engineering” Journal of Physical Chemistry C DOI: 10.1021/acs.jpcc.6b00981, 2016.
• J. Piao, L.T. Tseng, K Suzuki, J.B. Yi, “Fabrication, characterization and magnetic properties of Na doped ZnO nanorods”, Functional Materials Letters, DOI: 10.1142/S1793604716500399 (in press), 2016.
• Y.R. Wang, S. Li and J.B. Yi, “Electronic and magnetic properties of Co doped MoS2 monolayer (link is external)’, Scientific Report, 6, 24153, 2016.
• J. Piao, L-T. Tseng, J.B. Yi, “Ferromagnetism in Sm doped ZnO nanorods by a hydrothermal method”, Chemical Physics Letters, 649, 19, 2016.
• L-T. Tseng, X. Luo, N. Bao, J. Ding, S. Li, J.B. Yi, "Structures and properties of transition-metal-doped TiO2 nanorods", Materials Letters, 170, 142-146, 2016.
• Y. R. Wang, J.Y. Piao, G.Z. Xing, Y.H. Lu, Z.M. Ao, N. N. Bao, J. Ding, S. Li, J.B. Yi, "Zn vacancy induced ferromagnetism in K doped ZnO”, Journal of Material Chemistry C, 3, 11953-11958, 2015.
• L.T. Tseng, Y.H. Luo, H.M. Fan, Y.R. Wang, X. Luo, T. Liu, P. Munroe, S. Li, and J.B. Yi, “Ferromagnetism in MnO2 doped with alkaline elements, Scientific Report 5, 9094, 2015.
• Y.R. Wang, X. Luo, L.T. Tseng, T. Li, G.Z. Xing, N.N. Bao, J. Ding, S. Li, and J.B. Yi, “Room Temperature Ferromagnetism and Transport Properties in Na Doped ZnO” Chemistry of Materials, 27, 1295-1291, 2015.
• G. Z. Xing, J. B. Yi, F. Yan, T. Wu and S. Li, “Positive magnetoresistance in ferromagnetic Nd-doped In2O3 thin films grown by pulse laser deposition”, Applied Physics Letters, 104, 202411 (2014).
• Y.W. Ma, Y.H. Luo, J.B. Yi, Y.P. Feng, T.S. Herng, X. Liu, D.Q. Gao, D.S. Xue, J.M. Xue, J.Y. Ouyang, J. Ding, “Unexpected room temperature ferromagnetism in Teflon”, Nature Communications , 3, 727 (2012).
• L. Shen, S.W. Yang, S. C. Xiang, T. Liu, B.C. Zhao, M. F. Ng, J. Göettlicher, J.B. Yi, S. Li, L. Wang, J. Ding, B.L. Chen, S. H. Wei, and Y. P. Feng, “Origin of long range ferromagnetic ordering in metal-organic frameworks with antiferromagnetic dimeric-Cu(II) building units” Journal of American Chemical Society, 134, 17286-17290 (2012).
• J. B. Yi, C. C. Lim, Y. P. Feng, J. Ding, G. Z. Xing, H. M. Fan, L. H. Van, S. L. Huang, K. S. Yang, X.L. Huang,X.B. Qin, B.Y. Wang, T. Wu, L. Wang, H. T. Zhang, X. Y. Gao, T. Liu, and A. T. S. Wee, “Ferromagnetism in Diluted Magnetic Semiconductors through Defect Engineering: Li-doped ZnO” Physical Review Letters 104, 137201 (2010).
• J.B. Yi, H. Pan, J.Y. Lin, J. Ding, Y.P. Feng, S. Thongmee, T. Liu, H. Gong, and L. Wang, “Ferromagnetism ZnO Nanowires Derived from Electrodeposition on AAO Template and Subsequently Oxidation” Advanced Materials 20, 1170 (2008).
• H. Pan, J.B.Yi, J.Y. Lin, Y.P. Feng, J. Ding, L.H. Van, and J.H. Yin, “Room Temperature Ferromagnetism in Carbon Doped ZnO” Physical Review Letters 99, 127201 (2007)(Highlighted in Physics world).
• J.B. Yi, J. Ding, Y.P. Feng, G.W. Peng, G.M. Chow, Y. Kawazoe, B.H. Liu, J.H. Yin, and S. Thongmee, “Evolution of Structural and Magnetism of NiO from Amorphous, Clusters to Nanocrystalline” Physical Review B 76, 224402 (2007).
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