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中国科学院大学研究生导师简介-高兴发

中国科学院大学 免费考研网/2016-05-09

高兴发 男高能物理研究所
电子邮件:gaox@ihep.ac.cn
通信地址:北京市玉泉路19号(乙)高能所
邮政编码:100049
研究组主页:http://www.ihep.cas.cn/zdsys/nmlab/gaox


研究领域用第一性原理和分子力场方法研究纳米材料生物化学和生物物理效应,在原子尺度探索实验现象背后的本质和规则,研究能够描述纳米材料性质和功能的理论模型,尤其是纳米毒理模型,以设计高效、低毒的抗肿瘤纳米药物。多数研究将与本单位或和其他单位的实验课题密切合作。具体包括以下研究方向:

(1) 纳米毒理的理论与计算;
(2) 纳米药物设计与机理的分子模拟;
(3) 纳米化学与纳米材料功能化的理论与计算。

近期我们重点关注碳纳米材料(富勒烯、纳米碳管和石石墨烯)。
招生信息欢迎对研究组以上研究方向感兴趣的同学加入,同时常年招聘客座学生和博士后,欢迎有意者电联。
教育背景 2001-09--2006-06 中国科学院高能物理研究所 博士
1997-09--2001-06 华东师范大学 学士

工作经历

工作简历 2011-04--今 中国科学院高能物理所 百人计划,研究员
2010-04--2011-03 美国伦斯勒理工学院物理系 博士后
2006-08--2010-03 日本分子科学研究所化学部 博士后

出版信息

发表论文 (1) Two-Dimensional Carbon Compounds Derived from Graphyne with Chemical Properties Superior to Those of Graphene,Scientific Reports,2013,通讯作者
(2) Opening a Large Band Gap for Graphene by Covalent Addition,Chem. Phys. Lett.,2013,第1作者
(3) Single Layer of Polymeric Cobalt Phthalocyanine: Promising Low-Cost and High-Activity Nanocatalysts for CO Oxidation,Small,2013,第3作者
(4) Chemistry and physics of a single atomic layer: strategies and challenges for functionalization of graphene and graphene-based materials,Chem. Soc. Rev.,2012,第5作者
(5) Theoretical Study on the Ground State Structure of a Uranofullerene U@C82,J. Phys. Chem. A ,2012,通讯作者
(6) Π-Bond Maximization of Graphene in Hydrogen Addition Reactions,Nanoscale,2012,第1作者
(7) Activation of molecular oxygen by a metal–organic framework with open 2,2′-bipyridine for selective oxidation of saturated hydrocarbons,Chem. Commun,2012,第3作者
(8) Phase diagram of graphene nanoribbons and band-gap bifurcation of Dirac fermions under quantum confinement,Phys. Rev. B ,2012,第3作者
(9) Amorphous structural models for graphene oxides,Carbon,2012,第5作者
(10) Regioselectivity Control of Graphene Functionalization by Ripples,Phys. Chem. Chem. Phys.,2011,第1作者
(11) Noise Amplification in Human Tumor Suppression following Gamma Irradiation,PLoS ONE,2011,第3作者
(12) Adsorption of Catechol on a Wet Silica Surface: Density Functional Theory Study,Theor. Chem. Acc.,2011,第3作者
(13) Open-Shell Singlet Character of Stable Derivatives of Nonacene, Hexacene and Teranthene,Org. Lett.,2011,第1作者
(14) Theoretical Insights into the Structures of Graphene Oxide and Its Chemical Conversions between Graphene,J. Comput. Theor. Nanosci.,2011,第1作者
(15) Hydrazine and Thermal Reduction of Graphene Oxide: Reaction Mechanisms, Product Structures, and Reaction Design,J. Phys. Chem. C ,2010,第1作者
(16) Half-Metallic Sandwich Molecular Wires with Negative Differential Resistance and Sign-Reversible High Spin-filter Efficiency,J. Phys. Chem. C ,2010,第2作者
(17) Nanoscale Jigsaw-Puzzle Approach for Large π-Conjugated Systems,Angew. Chem. Int. Ed.,2010,第1作者
(18) Carbon Spiral Helix: A Nanoarchitecture Derived from Monovacancy Defects in Graphene,Angew. Chem. Int. Ed.,2010,第1作者
(19) Mechanism and Dynamic Correlation Effects in Cycloaddition Reactions of Singlet Difluorocarbene to Alkenes and Disilene,J. Phys. Chem. A,2009,第1作者
(20) The non-covalent assembly of benzene-bridged metallosalphen dimers: photoconductive tapes with large carrier mobility and spatially distinctive conduction anisotropy,Chem. Commun.,2009,第3作者
(21) Dichlorocarbene Addition to C60 from the Trichloromethyl Anion: Carbene Mechanism or Bingel Mechanism,J. Phys. Chem. A,2009,第1作者
(22) Oxidation Unzipping of Stable Nanographenes into Joint Spin-Rich Fragments,J. Am. Chem. Soc.,2009,第1作者
(23) Comparative Study of Carbon and BN Nanographenes: Ground Electronic States and Energy Gap Engineering,J. Phys. Chem. C,2008,第1作者
(24) The way of stabilizing non-IPR fullerenes and structural elucidation of C54Cl8,J. Comput. Chem.,2007,第1作者
(25) Theoretical study of a hybrid type dumbbell-like fullerene dimer C60=C=C70,Chem. Phys. Lett.,2006,第1作者
(26) Theoretical studies of structures and stabilities of a new odd-numbered fullerene dimer: C141,J. Comput. Chem. ,2004,第1作者


发表著作 (1) 石墨烯纳米条带和纳米石墨烯中π电子的性质,Properties of π-Electrons in Graphene Nanoribbons and Nanographenes,Wiley,2010-05,第2作者

合作情况

项目协作单位国内合作单位:国家纳米科学中心,生物物理所,大连理工大学等
国外合作单位:日本名古屋大学,美国伦斯勒理工学院,美国波多黎各大学,韩国釜山大学等

相关话题/纳米 博士后 化学 设计 药物