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个人简介

2014/06 - 至今 郑州大学,物理学院,光电信息科学研究所,讲师 2008/09 - 2014/01 中国科学院理化技术研究所,博士(硕博连读) 2004/09 - 2008/07 郑州大学,物理工程学院,学士 代表性成果 1.国家自然科学基金青年基金项目(61505178),“基于非简并双光子吸收效应的具有高分辨率和高激发效率的荧光显微成像研究”,主持,2016/01-2018/12 2.国家自然科学基金青年基金项目(11504333),“基于Fano共振型超材料的表面增强单分子CARS光谱研究”,参与,2016/01-2018/12 授权发明专利 1.Laser micro/nano processing system and method,美国发明专利,专利号9187318 2.レーザマイクロ·ナノ加工システム及び方法,日本发明专利,专利号2013-528496 3.一种激光微纳加工系统及方法,中国发明专利,专利号201010290490.5 4.利用激光双光子直写技术制作微纳结构器件的方法,中国发明专利,专利号201110185710.2 5.一种利用激光制作金属微纳结构的系统与方法,中国发明专利,专利号201110214482.7

研究领域

1.超快激光微尺度3D打印 2.非线性光子学与超快光子学

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1.H. Liang, Q. Ma, J. Liu, X. Shi, G. Yang, S. Chen* and E. Liang, "Nondegenerate and degenerate two-photon absorption in cuprous oxide thin film," J. Nonlinear Optic. Phys. Mat. 1950015 (2019). 2.H. Xu, S. Chen*, K. Mu, J. Wang, Y. Tian, S. Su, Y. Mao* and E. Liang, "Investigation of nondegenerate two-photon absorption in common fluorescent dyes," J. Nonlinear Optic. Phys. Mat. 1850027 (2018). 3.Y. Mao, C. Ning, N. Zhang, Y. Hu, M. Li, H. Yang, S. Chen*, S. Su* and E. Liang, "Enhancing Photoelectrochemical Performance of TiO2 Nanowires through a Facile Acid Treatment Method," Journal of The Electrochemical Society 165, H799–H803 (2018). 4.C.-P. Shen, Y. Gao, S.-L. Su*, Y. Mao*, E. Liang, and S. Chen*, "Mutual Conversions Between Knill-Laflamme-Milburn and W States," Annalen der Physik 530, 1800114 (2018). 5.S. Chen, Y.-C. Zheng, M.-L. Zheng*, X.-Z. Dong, F. Jin, Z.-S. Zhao and X.-M. Duan*, "Nondegenerate two-photon absorption properties of a newly synthesized carbazole derivative," J. Mater. Chem. C 5, 470–475 (2017). 6.S. Chen, M.-L. Zheng, X.-Z. Dong, Z.-S. Zhao, X.-M. Duan*, Nondegenerate two-photon absorption in a zinc blende-type ZnS single crystal using the femtosecond pump-probe technique. J. Opt. Soc. Am. B 30, 3117-3122 (2013). 7. J. Zhang, S. Chen, J. Wang*, K. Mu, C. Fan, E. Liang and P. Ding, "An engineered CARS substrate with giant field enhancement in crisscross dimer nanostructure," Scientific Reports 8, 740 (2018). 8.J. Wang*, J. Zhang, Y. Tian, C. Fan, K. Mu*, S. Chen, P. Ding and E. Liang, "Theoretical investigation of a multi-resonance plasmonic substrate for enhanced coherent anti-Stokes Raman scattering," Opt. Express, OE 25, 497–507 (2017). 9.J. Wang*, J. Zhang, Y. Tian, K. Mu, C. Fan, S. Chen and P. Ding, "Fano resonances in nanorod dimers antenna," Mod. Phys. Lett. B 31, 1750202 (2017). 10.Y.-C. Zheng, M.-L. Zheng, K. Li, S. Chen, Z.-S. Zhao, X.-S. Wang and X.-M. Duan*, "Novel carbazole-based two-photon photosensitizer for efficient DNA photocleavage in anaerobic condition using near-infrared light," RSC Advances 5, 770–774 (2015). 11.Y.-C. Zheng, M.-L. Zheng*, S. Chen, Z.-S. Zhao, X.-M. Duan*, "Biscarbazolylmethane-based cyanine: a two-photon excited fluorescent probe for DNA and selective cell imaging," Journal of Materials Chemistry B 2, 2301-2310 (2014). 12.X. Huang, L. Shang, S. Chen, J. Xia, X. Qi, X. Wang, T. Zhang, X.-M. Meng*, "Type-II ZnO nanorod-SnO2 nanoparticle heterostructures: characterization of structural, optical and photocatalytic properties," Nanoscale 5, 3828-3833 (2013).

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