
照片尺寸:3800像素X 3500像素
陈刚
职称: 教授
院部/部门: 物理与光电学院
最高学历: 博士研究生
最高学位: 博士
毕业学校: 中国科学院研究生院
毕业专业: 凝聚态物理
联系方式
电子邮箱: phdgchen@163.com
办公地点: 365上市公司长清湖校区
个人简介
陈刚,男,汉族,山东泰安人,1974年2月生,中共党员。教授、泰山学者海外特聘专家,兼任中国材料研究会计算材料分会全国委员、亚洲计算材料学会会员。2002年于中国科学院获得理学博士学位,先后在中国科学院固体物理研究所、中国科学院理论物理研究所、香港中文大学、香港科技大学、日本东北大学金属材料研究所、美国弗吉尼亚联邦大学从事过科学研究工作。
招生方向
研究生招生专业:物理学/凝聚态物理
研究方向
团簇及纳米结构、表面及界面科学、缺陷物理、非局域效应探索
主持科研项目
1.国家自然科学基金面上项目“金团簇催化性质以及设计金催化结构的第一原理研究”
2.国家自然科学基金面上项目“轻金属配位氢化物中的催化机理及新催化结构探索的理论研究”
3.国家自然科学基金面上项目“合金及衬底近表面合金方法调控二维材料性能的理论研究”
4.国家自然科学基金面上项目“低维金催化结构的新型二维孔筛/基底双效异质载体的理论研究”
5.山东省重点研发计划(重大科技创新工程)“2英寸高质量、高紫外光透过率氮化铝单晶衬底制备技术”
6.山东省自然科学基金“净化污染的贵金属催化结构研究”
论文成果
专注于凝聚态物理研究,截至目前为止共发表SCI论文150余篇,以第二编辑身份协助王先生在英国物理学会(IoP)出版国际会议论文集一册,部分论文列表如下:
[1]G. Chen, Z. F. Liu, and X. G. Gong, Structures and its evolution of Ban (n=2~14) clusters, Eur. Phys. J. D 16, 33-36 (2001).
[2]S. P. Chan, G. Chen, X. G. Gong, and Z. F. Liu, Chemisorption of Hydrogen Molecules on Carbon Nanotubes under High Pressure, Phys. Rev. Lett. 87, 205502 (2001).
[3]S. P. Chan, G. Chen, X. G. Gong, and Z. F. Liu, Oxidation of Carbon Nanotubes by Singlet O2, Phys. Rev. Lett. 90, 086403 (2003).
[4]G. Chen, Z. F. Liu, and X. G. Gong, Structural transition in BanOm clusters, Phys. Rev. B 67, 205415 (2003).
[5]C. Zhang, G. Chen, K. D. Wang, H. W. Yang, T. Su, C. T. Chan, M. M. T. Loy, and X. D. Xiao, Experimental and Theoretical Inverstigation of Single Cu, Ag, and Au atoms Adsorbed on Si(111)-(7x7), Phys. Rev. Lett. 94, 176104 (2005).
[6]G. Chen, P. Jena, and Y. Kawazoe, Interaction of gas molecules with Ti-benzene complexes, J. Chem. Phys. 129, 074305 (2008).
[7]K. D. Wang, G. Chen, C. Zhang, M. M. T. Loy, and X. D. Xiao, Intermixing of Intrabasin and Interbasin Diffusion of a Single Ag Atom on Si(111)-(7x7), Phys. Rev. Lett. 101, 266107 (2008).
[8]G. Chen, X. D. Xiao, Y. Kawazoe, X. G. Gong, and C. T. Chan, Comparative study of single Cu, Ag, Au, and K atoms adsorbed on Si(111)-(7x7), Phys. Rev. B 79, 115301 (2009).
[9]G. Chen, Q. Wang, Q. Sun, Y. Kawazoe, and P. Jena, Structures of neutral and anionic Au16 clusters revisited, J. Chem. Phys. 132, 194306 (2010).
[10]G. Chen, S. J. Li, Y. Su, V. Wang, H. Mizuseki, and Y. Kawazoe, Improved stability and catalytic properties of Au16 cluster supported on graphane, J. Phys. Chem. C 115, 20168-20174 (2011).
[11]M. M. Zheng, S. J. Li, Y. Su, G. Chen, and Y. Kawazoe, Catalytic properties of near-surface alloy of transition metal in aluminum: A density functional theory study of structural and electronic properties, J. Phys. Chem. C 117, 25077-25089 (2013).
[12]S. L. Xiu, M. M. Zheng, P. Zhao, Y. Zhang, H. Y. Liu, S. J. Li, G. Chen, and Y. Kawazoe, An effective method of tuning conducting properties: First-principles studies on electronic structures of graphene nanomeshes, Carbon 79, 646-653 (2014).
[13]T. T. Jia, M. M. Zheng, X. Y. Fan, Y. Su, S. J. Li, H. Y. Liu, G. Chen, and Y. Kawazoe, Band Gap on/off Switching of Silicene Superlattice, J. Phys. Chem. C 119, 20747-20754 (2015).
[14]J. Li, X. Y. Fan, Y. P. Wei, J. X. Liu, J. H. Guo, X. X. Li, V. Wang, Y. Y. Liang, and G. Chen, Voltage-gated spin-filtering properties and global minimum of planar MnB6, and half-metallicity and room-temperature ferromagnetism of its oxide sheet, J. Mater. Chem. C 4, 10866-10875 (2016).
[15]T. T. Jia, G. Chen, and Y. S. Zhang, Lattice thermal conductivity evaluated using elastic properties, Phys. Rev. B 95, 155206 (2017).
[16]J. D. Fang, P. Zhao, and G. Chen, Germanene Growth on Al(111): A Case Study of Interface Effect, J. Phys. Chem. C 122, 18669-18681 (2018).
[17]G. Chen, T. T. Zhao, Q. Wang, and P. Jena, Rational Design of Stable Di-Anions and The Concept of Super-Chalcogens, J. Phys. Chem. A 123, 5753-5761 (2019).
[18]T. T. Zeng, H. Yang, H. B. Wang, and G. Chen, Acepentalene Membrane Sheet: A Metallic Two-Dimensional Carbon Allotrope with High Carrier Mobility for Lithium Ion Battery Anodes, J. Phys. Chem. C 124, 5999-6011 (2020).
[19]Y. Ding, W. Y. Huang, Y. Chang, Y. Song, and G. Chen, A Novel Two-Dimensional Allotrope of Silicon Grown on Al(111): A Case Study of the Interface Effect, J. Phys. Chem. C 126, 21482-21495 (2022).
[20]Y. Chang, G. P. Zhang, E. F. Xing, C. K. Wang, G. Chen, and Y. Song, Mechanically controllable conductance in carbon nanotube based nanowires, Phys. Chem. Chem. Phys. 25, 2926 (2023).
[21]W. Y. Huang, L. Y. Hou, Y. Song, and G. Chen, Novel Graphene Allotropes Designed by Polymerizing Pyracyclene Molecues, J. Phys. Chem. C 127, 19814-19824 (2023).
[22]X. X. Guo, J. H. Guo, D. Hou, and G. Chen, Theoretical Study of Covalent Organic Frameworks and Heterojunctions for the Oxygen Reduction Reaction, Phys. Chem. Chem. Phys. 26, 29955 (2024).
荣誉奖励
1.中国科学院院长奖(2001年)
2.Honor of The Selected Presentation for The GRI Symposium on Reactivity of Clusters, Nagoya, Japan (2009)
3.山东高等学校优秀科研成果奖(自然科学类)一等奖(第一位),2015
4.山东省自然科学学术创新奖,2018