
艾思科蓝公众号
个人简述:
陈建军,副教授,硕士生导师。2004年4月至今于浙江理工大学从事教学研究工作。入选2010年浙江省“新世纪151人才工程”培养人员第二层次,2013年入选浙江理工大学521中青年拔尖人才培养计划,浙江省青年科学家培养计划。
1999年6月本科毕业于江西科技师范大学化学系。2004年3月硕士毕业于浙江大学材料系无机非金属材料研究所;2008年3月博士毕业于浙江大学材料系金属材料研究所。2011年4月至2012年4月于美国佐治亚理工学院(Georgia Institute of Technology)材料系国际纳米专家王中林教授课题组访学,从事一维纳米材料的压电、传感及光电性能研究。2014年7月至9月于澳大利亚卧龙岗大学(University of Wollongang)访学,从事碳化硅光电催化性能研究。2013年7月至今,浙江大学硅材料国家重点实验室客座研究人员。
现任中国复合材料学会高级会员,中国复合材料学会青年工作委员会委员,Nano Research、Carbon、CrystEngComm、Journal of Alloys and Compounds、Physical Chemistry Chemical Physics及RSC Advances等刊物通讯审稿人。从事半导体材料、纳米材料、陶瓷材料、硅基材料及其性能的研究。在一维SiC纳米材料两步气-固反应生长机理的澄清、宏量制备、可控合成、光电性能与应用研究方面取得了创新性的研究成果。近几年主持完成了国家自然科学基金、浙江省自然科学基金、省科技厅钱江人才项目和企业横向项目等多项;在国际国内核心期刊发表学术论文60余篇,获授权国家发明专利二十余项。
科研工作:
近五年论文
2015年
[1]Jianjun Chen,* Xin Liao, Mingming Wang, Zhaoxiang Liu, Judong Zhang, Lijuan Ding, LiGao and Ye Li,Highly flexible, nonflammable and free-standing SiC nanowire paper. Nanoscale, 7(14): 6374-6379,2015
[2]Xin Liao,Jianjun Chen,*Mingming Wang, Zhaoxiang Liu, Lijuan Ding,and Ye Li,Enhanced photocatalytic and photoelectrochemical activities of SnO2/SiC nanowire heterostructure photocatalysts. Journal of Alloys and Compounds,658: 642-648,2015
[3]Xin Liao, Zhaoxiang Liu, Lijuan Ding,Jianjun Chen,*andWeihua Tang,Photoelectrocatalytic activity of flexible PEDOT-PSS/silicon carbide nanowire films. RSC Advances,5: 99143-99147,2015
[4]Jianjun Chen*, Mingming Wang, Xin Liao, Zhaoxiang Liu, Judong Zhang, Lijuan Ding, Li Gao, Ye Li ,Large-scale synthesis of single-crystal molybdenum trioxide nanobelts by hot-wire chemical vapour deposition,Journal of Alloys and Compounds, 619:406–410, 2015.
2014年
[1] Jianjun Chen,*Judong Zhang, Mingming Wang, Ye Li, High-temperature hydrogen sensor basedonplatinum nanoparticle-decorated SiC nanowire device,Sensors and Actuators B: Chemical,201, 402-4061, 2014
[2] Jianjun Chen*, Judong Zhang,Mingming Wang, Li Gao, Ye Li, SiC nanowire film grown on the surface of graphite paper andits electrochemicalperformance,Journal of Alloys and Compounds,605, 168-172, 2014
[3] Judong Zhang,Jianjun Chen*,Lipeng Xin,Mingming Wang,Hierarchical 3C-SiC nanowires as stable photocatalyst for organic dye degradation under visible light irradiation,Materials Science & Engineering B, 179, 6-11, 2014
[4] Mingming Wang,JianjunChen*, Xin Liao, Zhaoxiang Liu, Judong Zhang, Li Gao, Ye Li , Highly efficient photocatalytic hydrogen production of platinum nanoparticle-decorated SiC nanowires under simulated sunlight irradiation,International Journal ofHydrogen Energy,39:14581-14587, 2014.
2013年
[1]Yuanqian Wang,Lin Liu,Yurong Cai,Jianjun Chen,Juming Yao*, Preparation and photocatalytic activity of cuprous oxide/carbon nanofibres composite films,Applied Surface Science,270, 245–251, 2013
2012年
[1] Lipeng Xin, Qiang Shi,Jianjun Chen*, Weihua Tang, Naiyan Wang, Yang Liua, Yixiong Lina, Morphological evolution of one-dimensional SiC nanomaterials controlled by sol–gel carbothermal reduction,Mater. Charact., 65, 55-61,2012
[2]Jianjun Chen*, Qiang Shi, Lipeng Xin, Yang Liu and Weihua Tang, Fabrication and photoluminescence of hierarchical SiC nanowires,Curr. Nanosci., 8,226-231,2012
[3] Renbing Wu, Kun Zhou, Jun Wei, Yizhong Huang, Fei Su,Jianjun Chen, and Liuying Wang,Growth of Tapered SiC Nanowires on Flexible Carbon Fabric: Toward Field Emission Applications,J. Phys. Chem. C, 116 (23), 12940–12945, 2012
[4]陈建军*,一维碳化硅纳米材料的研究进展,第17届全国复合材料学术会议(纳米复合材料与界面分论坛)论文集,2012年,1010-1013页。
2011年
[1]Jianjun Chen*, Weihua Tang, Lipeng Xin, Qiang Shi, Band gap characterization and photoluminescence properties of SiC nanowires,Applied Physics A, 102 (1),213-217,2011
[2]Jianjun Chen*, Qiang Shi, Lipeng Xin, A simple catalyst-free route for large-scale synthesis of SiC nanowires,J. Alloys Compd., 509, 6844-6847, 2011
[3]Jianjun Chen*, Qiang Shi, Weihua Tang, Field emission performance of SiC nanowires directly grown on graphite substrate,Mater. Chem. Phys., 126(3), 655-659, 2011
[4] Pingfan Du, Lixin Song, Jie Xiong*, Zhenqiang Xi,Jianjun Chen, Ling Hui Gao, Naiyan Wang, High-Efficiency Photocatalytic Degradation of Methylene Blue Using Electrospun ZnO Nanofibers as Catalyst,J. Nanosci. Nanotechn., 11(9),7723-7728, 2011
[5] Linhui Gao, Yue An, Hongliang Zhu, Lun Wang,Jianjun Chen, Naiyan Wang, GuofuOu*, Hydrothermal synthesis and photoluminescence properties of Y2Zr2O7:Tb3+phosphors,J. Mater. Sci., 46(5), 1337-1340, 2011
[6]石强,陈建军*,刘羿君,碳化硅纳米晶须的制备及热稳定性研究,浙江理工大学学报, 28(4),558-562,2011
2010年
[1]Jianjun Chen*, Qiang Shi, Linhui Gao, Hongliang Zhu, Large-scale synthesis of ultralong single-crystalline SiC nanowires,Phys. Status Solidi A, 207 (11), 2483-2486, 2010
[2]Jianjun Chen*, Yi Pan, Renbing Wu, Synthesis of the tube-brush-shaped SiC nanowire array on carbon fiber and its photoluminescence properties,J. Nanosci. Nanotechn., 10, 6550-6555, 2010
[3]Jianjun Chen*, Yi Pan, Renbing Wu, Growth mechanism of twinned SiC nanowires synthesized by a simple thermal evaporation method,Physica E, 42 (9),2335-2340,2010 (SCI)
[4]Jianjun Chen*, Yi Pan, Renbing Wu, Photoluminescence of twinned SiC nanowires prepared by sol–gel process,Rare Metal Mat. Eng., 39(Suppl.2), 90-94, 2010
[5]Jianjun Chen*, Yi Pan, Wei Hua Tang and Qiang Shi, Tuning the morphologies of SiC nanowires via the change of the CoxSiy melts,Nano-Micro Lett., 2(1),11-17,2010
[6] Hongliang Zhu, Enze Zhu, Guofu Ou*, Linhui Gao,Jianjun Chen, Fe(3)O(4)-Au and Fe(2)O(3)-Au Hybrid Nanorods: Layer-by-Layer Assembly Synthesis and Their Magnetic and Optical Properties,Nanoscale Res. Lett., 5(11), 1755-1761, 2010
[7]陈建军*,彭志勤,董文钧,王彩华,唐为华,先驱体制备SiC纤维的发展历程与研究进展,高科技纤维与应用,35(1),35-42,2010
[8]石强,陈建军*,碳纤维基底上SiC纳米线的制备及生长机理, 2010复合材料创新与可持续发展(上册), 354-359页,中国科学技术出版社,第十六届全国复合材料学术会议,湖南长沙,2010.10.23-24,
[9]朱小燕,王顺利,邹以慧,刘仁娟,陈建军,唐为华,碳热还原法制备SiC纳米线及其结构表征, 2010年第九届中国国际纳米技术(西安)研讨会会议论文,西安,2010.11.15-19。
[10] Li, Ye, Wang, Lina, Xie, Weihui,Chen, Jianjun*, Influence of SiC Coating on the Oxidation Behavior of PAN Carbon Fiber at Elevated Temperatures, 2nd International Conference on Advanced Textile Materials & Manufacturing Technology, pp54-58,Hangzhou,China, 2010.10.20-24.
欢迎有志于科研的研究生报考,已毕业研究生主要在大型国有企业及私企从事研发或继续攻读博士学位。
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