删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

哈尔滨工程大学动力与能源工程学院研究生考研导师简介-韩洋

本站小编 Free考研网/2019-05-26

韩洋部门:动力与能源工程学院

学科:动力工程及工程热物理

职务:

职称:副教授

指导
资格:
电话:

传真:

邮箱:yhan_heu@163.com

邮编:150001

地址:哈尔滨工程大学


个人简介
韩洋,女,汉族,中共党员。2014年博士毕业于南京大学物理系。2016年加入哈尔滨工程大学动力学院,从事教学科研工作。主要研究兴趣:1)可燃冰的形成机理和性质模拟,2) 采用第一性原理、分子动力学和解析等方法对材料的力学、热学、电磁学及热电性质等进行数值模拟。已发表SCI论文16篇,其中两篇被编辑highlight。

教育经历
2009年9月~2014年7月南京大学物理系,计算凝聚态物理专业,博士
2005年9月~2009年7月天津师范大学,物理系,本科



工作经历
2016年11月~今哈尔滨工程大学,动力学院,副教授
2014年11月~2016年10月德国亚琛工业大学,GHI,博士后

研究方向
1) Numerical simulations on the formation and physical properties of natural gas hydrate
2) Numerical simulations on mechanical, thermal, electronic and magnetic, and thermoelectric properties of materials by using first-principles calculations, molecular dynamics simulations and analytical models
承担项目
[2] 德国亚琛工业大学,高性能计算项目(项目编号11041, 题目 “Tension caused unusual enhancement of thermal conductivity in bulk carbon honeycomb”),已资助 (机器编号:jara0153,资助0.16百万机时,资助时间2016年11月1日~2017年10月30).
[1] 德国亚琛工业大学,高性能计算项目(项目编号10728, 题目 “Prediction of Thermoelectric Materials Through Ab-initio Calculations”),已资助 (机器编号:jara0149,资助2百万机时,资助时间2016年5月1日~2017年4月30).

学术交流
招生信息
无招生资格

本科生授课课程
研究生授课课程
在德国亚琛工业大学博士后期间,讲授一门有关第一性原理的硕士研究生课程“Density Functional Theory for Materials Engineers”(译:针对材料工程师的密度泛函理论),2016年,暑期学期。

实践性教学
教学研究课题
社会兼职



专利成果


出版著作


发表论文
[16] G. Qin, X. Zhang, S. Yue, Z. Qin, H. Wang, Y. Han, M. Hu, “Resonant bonding driven giant phonon anharmonicity and low thermal conductivity of phosphorene”. Physical Review B, 94 (2016) 165445.[15] Y. Han, J. Dong, G. Qin, M. Hu, “Phonon Transport in Ground State of Two-dimensional Silicon and Germanium”. RSC Advances, 6 (2016) 69956-69965.[14] G. Hong, Y. Han, T. Schutzius, Y. Wang, Y. Pan, M. Hu, J. Jie, C. Sharma, U. Müller, D. Poulikakos, “On the Mechanism of Hydrophilicity of Graphene”. Nano letters, 16 (2016) 4447–4453.[13] Y. Han, G. Qin, J. Christoph, M. Hu, “Strain-modulated electronic and thermal transport properties of two-dimensional O-silica”. Nanotechnology, 27 (2016) 265706-265717.[12] Y. Han, M. Hu, “Ground State of Bilayer ha-silica: Mechanical and Electronic Properties”. Nanotechnology, 26 (2015) 505702. (Editor Highlights, http://nanotechweb.org/cws/article/lab/63408)[11] Y. Han, T. Hu, R. Li, J. Zhou, J. Dong, “Stabilities and electronic properties of monolayer MoS2 with one or two sulfur line vacancy defects”. Physical Chemistry Chemical Physics, 17 (2015) 3813-3819.[10] L. Rui, Y. Han, and J. Dong. "Substrate effects on the monovacancies of silicene: studied from first principle methods." Physical Chemistry Chemical Physics 17 (2015): 22969-22976.[09] Y. Han, J. Zhou, J. Dong, “Electronic and Magnetic Properties of MoS2 Nanoribbons with Sulfur Line Vacancy Defects”. Applied Surface Science, 346 (2015) 470-476[08] T. Hu, Y. Han, R. Li and J. Dong, “Strain-dependent electronic properties of monolayer and bilayer phosphorene”. Nanotechnology, 25 (2014) 455703.[07] Y. Han, R. Li, J. Zhou, J. Dong, K. Yoshiyuki, “Electronic and magnetic properties of boron nitride nanoribbons with square-octagon (4|8) line defects”. Nanotechnology, 25 (2014) 115702. (Editor Highlights, http://nanotechweb.org/cws/article/lab/56001)[06] R. Li, Y. Han, T. Hu, J. Dong, Y. Kawazoe, “New Self-healing Monovacancy of Low-buckled Silicene: Studied by First-principles Calculations”. Physical Review B, 90 (2014) 045425.[05] Y. Han, J. Zhou, J. Dong, K. Yoshiyuki, “Formation of single-walled bimetallic coinage alloy nanotubes in confined carbon nanotubes: molecular dynamics simulations”. Physical Chemistry Chemical Physics, 15 (2013) 17171-17178.[04] R. Li, J. Zhou, Y. Han, J. Dong, Y. Kawazoe, “A new (2 × 1) reconstructed edge structure of zigzag Si nanoribbon: First principles study”. The Journal of Chemical Physics, 139 (2013) 104703.[03] Y. Han, R. Li, Y. Ge, J. Dong, “Growth of single-walled Ag and Cu nanotubes confined in carbon nanotubes, studied by molecular dynamics simulations”. Journal of Applied Physics, 113 (2013) 234303.[02] T. Hu, Y. Han, J. Dong, “Edge reconstructions of hexagonal boron nitride nanoribbons: A first-principles study”. Physica E: Low-dimensional Systems and Nanostructures, 54 (2013) 191–196.[01] Y. Han, T. Hu, J. Dong, “Growth of single-walled gold nanotubes confined in carbon nanotubes, studied by molecular dynamics simulations”. Physica E: Low-dimensional Systems and Nanostructures, 47 (2013) 122-127.
荣誉

奖励



自定义模块1



自定义模块2



自定义模块3





相关话题/计算 哈尔滨工程大学 动力 物理系 博士后