个人简介
学习简历
1988年09月 ── 1992年07月 东北大学材料系,工学学士
1992年09月 ── 1995年03月 东北大学材料系,工学硕士
1995年03月 ── 1998年10月 东北大学材料系,工学博士
工作简历
1995年03月 ── 1998 年12月 中国东北大学材料系,历任助教、讲师
1999年01月 ── 1999 年05月 英国牛津大学材料系,英国皇家学会访问学者
1999年06月 ── 2006 年03月 日本东北大学工学部/产业技术综合研究所,JSPS博士后,客座研究员
2006年03月 ── 2015 年07月 中国东北大学材料各向异性与织构教育部重点实验室。教授,博士生导师
2015年07月 ── 至今 中国东北大学材料学院,教授,博士生导师,院长
研究领域
秦高梧教授以计算材料学为辅助手段,以新材料设计与制备为主攻方向,涉及
(1)环境材料与装备
(2)传感材料与器件
(3)生物材料与植入器械
近期论文
查看导师新发文章
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“Gigahertz Dielectric Polarization of Substitutional Single Niobium Atoms in Defective Graphitic Layers”, Physical Review Letters, 115(14)(2015)147601
“High-Magnetization FeCo Nanochains with Ultrathin Interfacial Gaps for Broadband Electromagnetic Wave Absorption at Gigahertz”, ACS Applied Materials & Interfaces, 8(5)(2016)3494-3498
“Multiple-phase carbon-coated FeSn2/Sn nanocomposites for high-frequency microwave absorption”, Carbon, 96(2016)972-979
“Recent developments in rare-earth free wrought magnesium alloys having high strength: A review”, Journal of Alloys and Compounds, 663(2016)321-331
“Fabrication of long-range ordered, broccoli-like SERS arrays and application in detecting endocrine disrupting chemicals”, Journal of Materials Chemistry C, 3(6)(2015)1309-1318
“A synergistic combination of diatomaceous earth with Au nanoparticles as a periodically ordered, button-like substrate for SERS analysis of the chemical composition of eccrine sweat in latent fingerprints”, Journal of Materials Chemistry C, 3(19)(2015)4933-4944
“Break Snoek limit via superparamagnetic coupling in Fe3O4/silica multiple-core/shell nanoparticles”, Applied Physics Letters, 106(3)(2015)033105
“Enhancing mechanical properties of Mg-Sn alloys by combining addition of Ca and Zn”, Materials & Design, 83(2015)736-744
“Novel stable hard transparent conductors in TiO2-TiC system: Design materials from scratch”, Scientific Reports, 4(2014)7503
“One-step fabrication of sub-10-nm plasmonic nanogaps for reliable SERS sensing of microorganisms”, Biosensors and Bioelectronics, 44(2013)191-197
“Enhanced photoelectrochemical activity for Cu and Ti doped hematite: The first principles calculations”, Applied Physics Letters, 98(11)(2011)112104
“Enhanced catalytic activity of Pt nanomaterials: from monodisperse nanoparticles to self-organized nanoparticle-linked nanowires”, Journal of Physical Chemistry-C, 114(2010) 6909–6913