研究方向
林方婷,教授,博士生导师。数理学院党委委员、副院长,校妇委会副主任、女教授女干部联谊会副会长、女青年教师联谊会会长,上海市优秀青年女教师联谊会副会长。1998-2008年,华东师范大学本硕博;2008年7月获凝聚态物理专业理学博士学位,入职上海师范大学物理系;2012-2013年,由国家公派出国访学一年。获“上海市晨光学者”、“上海市育才奖”、“上海市教学能手”、“上海高校青年教师教学竞赛”一等奖、“上海市教育系统三八红旗手”、“上海市教育系统巾帼建功标兵”等荣誉称号和奖项。
[1] K.Q. Xu, H. Xu, J.z. Zhang, X.D. Wu, L.H. Yang, J. Zhou, F.T. Lin*, L. Wang, G. Chen*, Graphene/GaAs heterostructure based Millimeter/Terahertz wave photodetector, J. Infra. & Milli. Waves 39 (2020) 533-539. [2] J.J. Ji, F.T. Lin*, X.Y. He, H. Shi*, Room-temperature ferromagnetism in Mn-doped CuCrO2 nanopowders, Mater. Sci. Forum 971 (2019) 91-100. [3] F.T. Lin*, Q.Q. Yu, L.Y. Deng, Z.J. Zhang, X.Y. He, A.Y. Liu, W.Z. Shi, Effect of La/Cr codoping on structural transformation, leakage, dielectric and magnetic properties of BiFeO3ceramics, J. Mater. Sci. 52 (2017) 7118-7129. [4] L.Y. Deng, F.T. Lin*, Q.Q. Yu, X.Y. He, A.Y. Liu, W.Z. Shi, J. Feng, Improved ferromagnetic behavior and novel near-infrared photoluminescence in Mg/Mn-codoped CuCrO2 ceramics, J. Mater. Sci. 51 (2016) 7491-7501. [5] X.S. Zhou, F.T. Lin*, W.Z. Shi, A.Y. Liu, Structural, electrical, optical and magnetic properties of p-type Cu(Cr1-xMnx)O2 thin films prepared by pulsed laser deposition, J. Alloys Compd. 614 (2014) 221-225. [6] F.T. Lin*, C. Gao, X.S. Zhou, W.Z. Shi, A.Y. Liu, Magnetic, electrical and optical properties of p-type Fe-doped CuCrO2 semiconductor thin films, J. Alloys Compd. 581 (2013) 502-507. [7] C. Gao, F.T. Lin*, X.S. Zhou,W.Z. Shi, A.Y. Liu, Fe concentration dependences of microstructure and magnetic properties for Cu(Cr1-xFex)O2 ceramics, J. Alloys Compd. 565 (2013) 154-158. [8] F.T. Lin*, W.Z. Shi, A.Y. Liu, Optical bandgap modulation and magnetic characterization of Fe-doped CuCrO2 nanopowders, J. Alloys Compd. 529 (2012) 21-24. [9] F.T. Lin*, W.Z. Shi, Effects of doping site and pre-sintering time on microstructure and magnetic properties of Fe-doped BaTiO3 ceramics, Physica B 407 (2012) 451-456. [10] F.T. Lin, W.Z. Shi*, Influence of non-isovalent ion substitution at A site on microstructure and magnetic properties of Ba(Ti0.3Fe0.7)O3 ceramic, J. Alloys Compd. 495 (2010) 167-172. [11] F.T. Lin, W.Z. Shi*, Effect of Sr concentration on microstructure and magnetic properties of (Ba1-xSrx)(Ti0.3Fe0.7)O3 ceramics, J. Magn. Magn. Mater. 322 (2010) 2081-2085. [12] F.T. Lin, W.Z. Shi*, Influence of vacuum annealing on microstructure and magnetic properties of (Ba0.8Sr0.2)(Ti0.3Fe0.7)O3 ceramic, Physica B 405 (2010) 1750-1753. [13] F.T. Lin, W.Z. Shi*, Magnetic properties of transition-metal-codoped BaTiO3 systems, J. Alloys Compd. 475 (2009) 64-69. [14] F.T. Lin, D.M. Jiang, X.M. Ma, W.Z. Shi*, Influence of doping concentration on room-temperature ferromagnetism for Fe-doped BaTiO3 ceramics, J. Magn. Magn. Mater. 320 (2008) 691-694. [15] F.T. Lin, D.M. Jiang, X.M. Ma, W.Z. Shi*, Effect of annealing atmosphere on magnetism for Fe-doped BaTiO3 ceramic, Physica B 403 (2008) 2525-2529. [16] F.T. Lin, D.M. Jiang, X.M. Ma, W.Z. Shi*, Structural order and magnetic properties of Fe3Si/Si(100) heterostructures grown by pulsed-laser deposition, Thin Solid Films 515 (2007) 5353-5356. [17] F.T. Lin, W.Z. Shi*, Dongmei Jiang, Xueming Ma, Gang Shen, Studies on microstructural changes and phase transition during preparation of FeGeNi ternary alloy by mechanical alloying, Physica B 371 (2006) 149-152. [18] F.T. Lin, W.Z. Shi*, X.M. Ma, Preparation and microstructures of FeSiBNbCu thin films, Physica B 355 (2005) 182-187. |