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杭州师范大学理学院导师介绍:叶全林


  姓名:叶全林 Quan-Lin YE
  性别:男 Male
  联系方式:************* (O),***********;qlye@hznu.edu.cn;
  职称:讲师

  研究领域:
  纳米磁性材料和功能半导体材料

  Nanostructured magnetic materials and semiconductors for spintronics

  个人简历:
  学习经历:
  2000.9-2005.6 浙江大学物理系 凝聚态物理专业 获理学博士学位
  1996.9-2000.6 浙江大学物理系 物理学专业 获理学学士学位
  工作经历:
  2011.2-至今 任教于杭州师范大学理学院物理系
  2010.1-2011.1 新加坡南洋理工大学数理学院物理与应用物理系 从事博士后研究
  2005.7-2009.12 日本名古屋大学物质科学国际研究中心 从事博士后研究 (其中,2006.11-2008.10 为日本学术振兴会JSPS的海外特别研究员)

  Education
  June 2005 Ph.D. Condensed Matter Physics, Zhejiang University
  June 2000 B.Sc. Physics, Zhejiang University

  Working Experience
  Feb. 2011-Present Lecturer, Department of Physics, Hangzhou Normal University
  Jan. 2010-Jan. 2011 Postdoctoral Researcher, Division of Physics & Applied Physics, Nanyang Technological University, Singapore
  Jul. 2005-Dec. 2009 Postdoctoral Fellow, International Research Center for Materials Science, Nagoya University, Japan
  (Nov. 2006-Oct. 2008, JSPS Fellowship)

  教学情况
  主要担任大学物理C、大学物理B、和基础物理实验等课程的教学

  University Physics C (for Chemistry and Biology), University Physics B (for Mathematics), and Fundamental Physics Experiment (for Physics)

  科研情况:
  主要从事纳米磁性材料和功能半导体材料的制备和物理性能的研究,迄今在该领域发表SCI论文20余篇,总引用次数达200余次。自2005年以来,应邀成为Phys. Rev. Lett,Phys. Rev. B,Nanotechnology,J. Phys. Chem,Nanoscale Res. Lett,Langmuir等国际学术期刊的审稿人,现主持国家自然科学基金项目1项,作为主要研究成员参与国家自然科学基金项目2项和浙江省自然科学基金1项。

  Research Interests
  Mainly focus on fabrications and physical properties of low-dimensional nanostructured magnetic materials and semiconductors, towards applications in spintronics, optical electronic devices and sensors.
  Professional Services
  Reviewer for peer-reviewed journals including Phys. Rev. Lett, Phys. Rev. B, Nanotechnology, J. Phys. Chem, Nanoscale Res. Lett, Langmuir, J. Phys. D: Appl. Phys, and J. Optics.

  代表性论文:
  1.Rui Chen, Quan-Lin Ye, T. C. He, T. Wu, and H. D. Sun, “Uniaxial tensile strain and exciton-phonon coupling in bent ZnO nanowires obtained by low energy argon ion milling”, Appl. Phys. Lett. 98, 241916(1-3) (2011)
  2.Quan-Lin Ye, Hirofumi Yoshikawa, and Kunio Awaga, “Magnetic and optical properties of submicron-size hollow spheres”, Materials, 3, 1244-1268 (2010) (Invited Review)
  * Selected for the November, 23, 2010 (Volume 41, Issue 47) of ChemInform.
  3.Quan-Lin Ye, Hirofumi Yoshikawa, Shunji Bandow, and Kunio Awaga, “Green magnetite (Fe3O4): unusual optical Mie scattering and magnetic isotropy of submicron-size hollow spheres”, Appl. Phys. Lett. 94, 063114(1-3) (2009)
  *Selected for the February 23, 2009 issue of Virtual Journal of Nanoscale Science & Technology.
  4.Quan-Lin Ye, Yasuharu Kozuka, Hirofumi Yoshikawa, Kunio Awaga, Shunji Bandow, and Sumio Iijima, “Effects of the unique shape of submicron magnetite hollow spheres on magnetic properties and domain states”, Phys. Rev. B 75, 224404(1-5) (2007)
  5.Mototaka Ohnishi, Yasuharu Kozuka, Quan-Lin Ye, Hirofumi Yoshikawa, Kunio Awaga, “Phase selective preparations and surface modifications of spherical hollow nanomagnets”, J. Mater. Chem. 16, 3215–3220 (2006)
  6.叶全林,许晓军,叶高翔,“沉积在液相基底表面磁性薄膜的形成机理和特性研究”,《物理》 34 (5), 362-370 (2005)
  *评述文章,且被选为本期杂志的封面。
  7.Quan-Lin Ye, Chun-Mu Feng, Xiao-Jun Xu, Jin-Sheng Jin, A-Gen Xia, and Gao-Xiang Ye, “Anomalous hysteresis properties of iron films deposited on liquid surfaces”, J. Appl. Phys. 98, 013906(1-5) (2005)
  8.Sen-Jiang Yu, Yong-Ju Zhang, Quan-Lin Ye, Ping-Gen Cai, Xiao-Wei Tang, and Gao-Xiang Ye, “Spontaneous formation of ordered patterns in Al films deposited on silicone oil surfaces”, Phys. Rev. B 68, 193403(1-4) (2003)
  9.Quan-Lin Ye, Sen-Jiang Yu, Jin-Sheng Jin, and Gao-Xiang Ye, “Formation mechanism and orderly structures of an iron film system deposited on silicone oil surfaces”, Chinese Phys. Lett. 20, 1109–1111 (2003)
  10.Quan-Lin Ye, Xiao-Jun Xu, Ping-Gen Cai, A-Gen Xia, and Gao-Xiang Ye, “Experimental observation of ordered stress patterns in iron films deposited on silicone oil surfaces”, Phys. Lett. A 318, 457–462 (2003)
  11.Xiang-Ming Tao, Gao-Xiang Ye, Quan-Lin Ye, et al, “Anomalous electrical conductivity of a gold thin film percolation system”, Phys. Rev. B 66, 115406(1-6) (2002)

  *如果发现导师信息存在错误或者偏差,欢迎随时与我们联系,以便进行更新完善。联系方式>>

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