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个人简介

张丛筠,2013年6月获得山东大学物理化学专业博士学位,期间于德国明斯特大学学习纳米材料的自组装。 2014年1月美国德克萨斯州立大学访问学者,目前主要从事纳米材料的自组装、氧化石墨烯贵-金属纳米复合材料和痕量环境污染物检测等方面的研究工作。与美国德克萨斯州立大学有良好的交流合作关系。目前主持国家自然基金一项,山西省青年科学基金一项,负责山西省科技厅国际合作项目一项,负责山西省重点研发项目一项。申请与授权发明专利5项。以第一作者和通讯作者发表SCI论文10余篇,其中top期刊多篇。多次参加国际国内学术会议并做口头报告

近期论文

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1. Cong-yun Zhang, Rui Hao, et al. Graphene oxide-wrapped flower-like sliver particles for surface-enhanced Raman spectroscopy and their applications in polychlorinated biphenyls detection. Applied Surface Science, 2017, 400, 49-56. (IF:3.387, Top期刊) 2. Cong-yun Zhang, Rui Hao, et al. A ternary functional Ag@GO@Au sandwiched hybrid as anultrasensitive and stable surface enhanced Raman scattering platform. Applied Surface Science 2017, 409, 306-313. (IF:3.387, Top期刊) 3. Cong-yun Zhang, Ya Lu, et al. Facile fabrication of Ag dendrite-integrated anodic aluminum oxide membrane as effective three-dimensional SERS substrate. Applied Surface Science 2016, 377, 167–173. (IF:3.387, Top期刊) 4. Congyun Zhang, Rui Hao, et al. Novel synthesis of hierarchical flower-like silver assemblies with assistance of natural organic acids for surface-enhanced Raman spectroscopy. Journal of Materials Science, 2017, 52 (19) :11391-11401(IF:2.599, Top期刊) 5. Congyun Zhang, Haitao Kang, Kai Lv, Hui Chen, Shiling Yuan*. Maize Phytoliths and Photoluminescent Silica Nanotubes Prepared from a Natural Silica Resource. Industrial & Engineering Chemistry Research, 2011, 50, 12521-12526. (IF:2.843, Top期刊) 6. Congyun Zhang, Chuan Du, Hui Yan, Shiling Yuan*, Lifeng Chi*. Influence of Self -Assembled Monolayers on Growth and Crystallization of Rubrene Films: A Molecular Dynamics Study. RSC Advances, 2013, 3, 15404-15410. (IF:3.108) 7. Congyun Zhang, Zhen Xu, Hui Yan, Fengfeng Gao, Shiling Yuan*. Deposition behavior onto different template structures and step-edge induced area-selective growth of rubrene: A molecular dynamics study. Chemical Physics Letters, 2013, 571, 38-43. (IF: 1.815) 8. Congyun Zhang, Hui Yan, Kai Lv, Shiling Yuan*. Facile Synthesis of Hierarchically Porous Silica Nanocapsules and Nanospheres via Vesicle Templating. Colloids and Surfaces A, 2013, 424, 59-65. (IF: 2.714)

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