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姓名 陈国柱
学历/学位研究生/博士(后)
职称/职务副教授/材料化学系副主任
联系电话0531-82769181
电子邮箱chm_chengz@ujn.edu.cn
实验室/办公室B720
主讲课程材料科学基础教程(本科)、纳米技术及应用(博士)
科研方向:  

2009年毕业于山东大学化学与化工学院,获得理学博士学位,主要从事催化剂的制备与表征,尤其是金属氧化物、双金属催化剂在异相催化中的性能评价及应用方面的研究。20097月至20138月,在加拿大国立科学研究院(INRS)从事博士后研究工作。先后在Chem.Commun., Adv. Funct.Mater., J. Mater. Chem. A 等杂志发表文章多篇;美国材料化学会、加拿大化学会会员,201311月被聘为加拿大魁北克功能材料协会会员。多次参加国际会议,在美国化学材料学会、加拿大化学年会、新加坡材料大会等做口头报告,曾担任96届加拿大化学会分组会主席,第二届国际纳米大会青年论坛主席。


科研工作经历:

2004/09-2009/07 山东大学硕博连读 无机化学 博士
2009/07-2013/08
加拿大国立科学研究院 (INRS) 博士后
2013/09-
济南大学化学化工学院

科研成果及奖励(包括项目、专利、鉴定等)(2005年以来): 

主持项目

济南大学科研启动基金

教育部留学回国人员科研启动基金

山东省面上项目基金

 

专利

一种碳纳米管负载双金属氧化物空心纳米颗粒的制备方法(专利编号:201410303236)

 

教学成果与奖励(2005年以来):
代表性论文(2005年以来):

[1] G. Chen, Q. Xu, Y. Yang, C. Li, T. Huang, G. Sun, S. Zhang, D. Ma, X. Li, A Facile and Mild Strategy to Construct Mesoporous CeO2-CuO Nanorods with Enhanced Catalytic Activity toward CO Oxidation, ACS Appl. Mater. Interfaces, DOI: 10.1021/acsamin.5b06495, 2015. (影响因子:6.723)

[2] G. Chen, F. Rosei, D. Ma, Template Engaged Synthesis of Hollow Ceria-Based Composites, Nanoscale, 7, 5578-5591, 2015. (影响因子:7.394)

[3] G. Chen, Q. Xu, Y. Wang, G. Song, W. Fan, Room Temperature Interfacial Reaction-Directed Synthesis of Hierarchically Porous Ceria From a Water-Soluble Precursor, J. Mater. Chem. A, 3, 7022-7028, 2015. (影响因子:7.443)

[4] J. Zhang, G. Chen, D. Guay, M. Chaker, D. Ma, Highly Active PtAu Alloy Nanoparticle Catalysts for the Reduction of 4-Nitrophenol, Nanoscale, 6, 2125-2130, 2014. (影响因子:7.394)

[5] M. R. Kim, Z. Xu, G. Chen, D. Ma, Semiconductor and Metallic Core–Shell Nanostructures: Synthesis and Applications in Solar Cells and Catalysis, Chem. Eur. J. 20, 11256-11275, 2014. (影响因子:5.731)

[6] G. Chen, J. Zhang, F. Rosei, D. Ma, Shape-Controlled Synthesis of Ruthenium Nanocrystals and Their Catalytic Applications, New J. Chem., 5, 1827-1833, 2014. (影响因子:3.159)

[7] G. Chen, H. Zhao, F. Rosei, D. Ma, Effect of Redox Reaction Products on the Luminescence Switching Behavior in CePO4:Tb Nanorods, J. Phys. Chem. C 117(19), 10031-10038, 2013.(影响因子:4.835)

[8] J. Zhang, G. Chen, M. Chaker, F. Rosei, D. Ma, Gold Nanoparticle Decorated Ceria Nanotubes with Significantly High Catalytic Activity for the Reduction of Nitrophenol and Mechanism Study, Appl. Catal. B 132-133, 107-115, 2013. (通讯作者) (影响因子:6.007)

[9] F. Zhu, G. Chen, S. Sun, X. Sun, In Situ Growth of Au@CeO2 Core-Shell Nanoparticles and CeO2 Nanotubes from Ce(OH)CO3 Nanorods, J. Mater. Chem. A 1(2), 288-294, 2013.(通讯作者)(影响因子:7.443)

[10] S. Huang, G. Chen, M. Chaker, T. Ozaki, P. Tijssen, D. Ma, Fluorescent-Magnetic Multifunctional Nanoparticles for Imaging & Drug Delivery, Reviews in Nanoscience and Nanotechnology 2 (346), 346-364, 2013.

[11] G. Chen, F. Rosei, D. Ma, Interfacial Reaction-Directed Synthesis of Ce-Mn Binary Oxide Nanotubes and Their Applications in CO Oxidation and Water Treatment, Adv. Funct. Mater. 22(18), 3914-3920, 2012. (影响因子:10.439)

[12] G. Chen, S. Desinan, R. Rosei, F. Rosei, D. Ma, Hollow Ruthenium Nanoparticles with Small Dimensions Derived from Ni@Ru Core@Shell Structure: Synthesis and Enhanced Catalytic Dehydrogenation of Ammonia Borane, Chem. Commun. 48(64), 8009-8011, 2012. (影响因子:6.718)

[13] G. Chen, S. Desinan, R. Rosei, F. Rosei, D. Ma, Synthesis of Ni-Ru Alloy Nanoparticles and Their High Catalytic Activity in Dehydrogenation of Ammonia Borane, Chem. Eur. J. 18(25), 7925-7930, 2012. (影响因子:5.731)

[14] H. Liang, G. Chen, S. Desinan, R. Rosei, F. Rosei, D. Ma, In Situ Facile Synthesis of Ruthenium Nanocluster Catalyst Supported on Carbon Black for Hydrogen Generation from the Hydrolysis of Ammonia-Borane, Int. J. Hydrogen Energy 37(23), 17921-17927, 2012. (影响因子:2.93)

[15] G. Chen, S. Desinan, N. Riad, R. Rosei, F. Rosei, D. Ma, Bifunctional Catalytic/Magnetic Ni@Ru Core-Shell Nanoparticles, Chem. Commun. 47(22), 6308-6310, 2011.(影响因子:6.718)

[16] G. Chen, F. Zhu, X. Sun, S. Sun, R. Chen, Benign Synthesis of Ceria Hollow Nanocrystals by Template-Free Method, CrystEngComm. 13(8), 2904-2908, 2011. (影响因子:3.858)

[17] G. Chen, S. Sun, X. Sun, W. Fan, T. You, Formation of CeO2 Nanotubes From Ce(OH)CO3 Nanorods Through Kirkendall Diffusion, Inorg. Chem. 48(4), 1334-1338, 2009. (影响因子:4.794)

[18] G. Chen, C. Xu, X. Song, X.; W. Zhao, Y. Ding, S. Sun, Interface Reaction Routeto Two Different Kinds of CeO2 Nanotubes, Inorg. Chem. 47, 723-728, 2008. (影响因子:4.794)

[19] G. Chen, C. Xu, X. Song, S. Xu, Y. Ding, S. Sun, Template-Free Synthesis of Single-Crystalline-Like CeO2 Hollow Nanocubes, Cryst. Growth & Des. 8, 4449- 4453, 2008. (影响因子:4.558)

[20] G. Chen, S. Sun, W. Zhao, S. Xu, T. You, Template Synthesis and Luminescence Properties of CePO4:Tb Nanotubes, J. Phys. Chem. C 112, 20217-20221, 2008. (影响因子:4.835)

[21] G. Chen, S. Sun, X. Song, Z. Yin, H. Yu, C. Fan, W. Zhao, Shape-Selective Synthesis of CeO2 via anEDTA-Assisted Route, J. Mater. Sci., 42, 6977-6981, 2007. (影响因子:2.16)

[22] W. Zhao, X. Song, G. Chen, S. Sun, One-Step Template-Free Synthesis of ZnWO4 Hollow Clusters, J. Mater. Sci., 44, 3082-3087, 2009.
[23] S, Xu, S. Sun, G. Chen, X. Song, Rapid Room-Temperature Fabrication of Cu2O/Au Core-Shell Nanospheres, J. Cryst. Growth, 311, 2742-2745, 2009.
[24] W. Zhao, X. Song, G. Chen, S. Sun, Hydrothermal Synthesis of Hollow Twinning ZnO Microstructures, Cryst. Res. Technol. 44, 373-378, 2009.
[25] W. Zhao, X. Song, G. Chen, S. Xu, T. You, S. Sun, Hydrothermal Synthesis of PbWO4 Uniform Hierarchical Microspheres, Mater. Lett. 63, 285-288, 2009.
[26] W. Zhao, X. Song, Z. Yin, C. Fan, G. Chen, S. Sun, Self-assembly of ZnO Nanosheets into Nanoflowers at Room Temperature, Mater. Res. Bull. 43, 3171-3176, 2008.
[27] S. Xu, X. Song, C. Fan, G. Chen, W. Zhao, T. You, S. Sun, Kinetically Controlled Synthesis of Cu2O Microcrystals with Various Morphologies by Adjusting pH Value, J. Cryst. Growth 305, 3-7, 2007.
[28] H. Yu, G. Chen, S. Sun, Z. Yin, X. Song, Preparation of α-Fe2O3 Hollow Spheres via Random Aggregation of β-FeOOH Nanorods, Chin. J. Inorg. Chem. 23, 2115-2118, 2007.

 



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