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尚淑英

尚淑英

发布时间:2012-11-26浏览次数:1478

尚淑英 博士

2002.9 -2007.7 硕士-博士 中科院固体物理研究所 硕博连读
2007.7-2010.6 浙江大学 材料学 博士后
2010.7---今 河南师大 物理与电子工程学院

研究方向:微纳米复合材料、压敏材料
已发表文章:
1. Shang S Y, Wu X B, Shui J P, Zhu Z G “OBSERVATION OF ENERGY DISSIPATION PEAK IN POLYSTYRENE MELT ABOVE Tg” Chin. J. Poly. Sci. 2007, 6, 629
2. Shang S Y, Wu X B, Zhu Z G “Energy dissipation Study of atactic polystyrene melts above Tg” Physica B 2007 160, 396
3. Shang S Y, Zhu Z G, Lu Z J, Zhang G Z “Liquid-to-liquid Relaxation of Polystyrene Melts Investigated by Energy Dissipation” J.Phys. Conden. Matt. 2007, 19, 416107
4.Shang S Y Fang Z P and Zhu Z G Relaxation study of Poly(methylmethacrylate) in miscible blends withpoly(ethylene oxide) by low-frequency anelastic spectroscopy Physica B 2009, 404,1200
5. Shang S Y, Zhou X H, Chang F G and Guo C X. Critical electrical behaviors of finger-sensing metal/polymer composites near the percolation threshold Appl. Phys. Lett. 2012, 101, 211904.
6. Wu X B, Shang S Y, Xu Q L, Shui J P and Zhu Z G. Dynamic relaxation behaviors on Polystyrene/Poly(ethylene oxide) blends above glass transition temperature; Acta. Phys. Sin. 2007. 56. 8
7. Wu X B, Shang S Y, Xu Q L, Zhu Z G. Effects of molecular weight on the liquid-liquid transition in polystyrene melts studied by low-frequency anelastic spectroscopy J. Appl. Phys. 2008 103, 0735194.
8.Wu X B, Shang S Y Xu Q L et al. Composition-dependent Dampling and Relaxation Dynamics in Miscible Polymer Blends above Glass Transition Temperature by Anelastic Spectroscopy Appl. Phys. Lett. 2008, 93, 011910
9. Wu X B, Shang S Y, Xu Q L et al. low-frequency internal friction study on the structural changes in polymer melts. Chin. Phys. Lett. 2008, 25, 1388
10. Wu X B, Zhu Z G, Shang S Y, Xu Q L, Shui J P and Zhang G Z. Dynamics of PEO-PPO-PEO triblock copolymer in aqueous solutions investigated by internal friction; J. Phys. Conden. Matt. 2007, 19, 466102
11. Wu X B, Xu Q L, Shang S Y, Shui J P, Liu C S, Zhu Z G Low-Frequency Internal Friction Study on the Structural Changes in Polymer Melts Chin. Phys. Lett. 2008, 25, 1388.
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