个人简介
教育经历
2004.09-2008.01,清华大学,材料科学与工程,博士
2001.09-2004.07,山东大学,材料科学与工程,硕士
1997.09-2001.07,山东大学,材料科学与工程,学士
工作经历
2011.12-至今,中国石油大学(华东),副教授
2008.11-2010.04,日本NIMS研究所,博士后
2008.04-2011.11,中国石油大学(华东),讲师
研究领域
1、半导体基气体传感器的研发
2、钙钛矿材料的介电储能性能研究
3、锂硫电池中无机电解质的研发
近期论文
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1、Zhang JY, Zhen Y, Wang WX. An urchin-like SnO2/NaNbO3 nanocomposite with stable humidity-sensing properties at room temperature,Sens & Actu B, 283(2019) 643-650.
2、ZhenY, Li L, Lin Y. High Q m values and humidity effect on theelectrical properties of (K, Na)NbO 3 lead-free piezoceramicsdoped with B 2O3 –CuO mixed oxides. J. Ameri Ceram Soc., 2017:100(4)1561-1569.
3、ZhenY, Sun F, Zhang M. Ultrafast breathing humidity sensingproperties of low-dimensional Fe-doped SnO2 flower-like spheres.RSC advances, 2016, 6(32):27008-27015.
4、ZhangM, Sun F, Zhen Y. Hydrothermally synthesized SnO2-graphenecomposites for H-2 sensing at low operating temperature, Mat Sciand Engi B- 2016,209:37-44.
5、LiL, Zhen Y, Lin Y. Structure, dielectric and piezoelectricbehaviors of (K,Na)NbO3 ceramics with high Q (m) in low-humidityby introducing SiO2 and CuO mixed oxides, J Mater Sci—Mater inElectro, 2016, 27(10) 10888-10893.
6、SunF, Zhen Y, Zhang M. Al-Doped SnO2 Flower-Like Microspheres withHierarchicalNanorods Synthesized by Hydrothermal Method and H2 SensingProperty.Science of Advanced Materials, 2015,7(3 ) 414–422
7、ZhenY, Wang M M, Wang S, et al. Humidity Sensitive Properties ofAmorphous (K,Na)NbO3 Lead Free Thin Films, Ceram Inter,2014,40:10263-10267.
8、ZhenY, Wei D S. Enhanced Humidity Stability of (Li,K,Na)NbO3-basedLead-Free Piezoelectric Ceramics by Adding B2O3, Mater Sci Forum,2013,745-746:626-631
9、ZhenY, Li J F, Wang K. Spark plasma sintering of Li/Ta-modified(K,Na)NbO3 lead-free piezoelectric ceramics: Post-annealingtemperature effect on phase structure, electrical properties andgrain growth behavior. Mater Sci &Eng B, 176 (2011)1110-1114.
10、ZhenY, T. Ohsawa, Y. Adachi, et al.. Investigations of growthkinetics of pulsed laser deposition of tin oxide films by isotopetracer technique. J Appl Phys. 2010(108)104901.
11、ZhenY, Li J F. Preparation and Electrical Properties of Fine-Scale1-3 PZT/Epoxy Composite Thick Films for High-Frequency UltrasonicTransducers. J Appl Phys. 2008, 103 : 084119.
12、ZhenY, Li J F. Normal sintering of (K,Na)NbO3-based ceramics:influence of sintering temperature on densification,microstructure, and electrical properties. J Am Ceram Soc, 2006,89: 3669-3675.
13、ZhenY, Li J F. Abnormal grain growth and new core-shell structure in(K,Na)NbO3-based lead-free piezoelectric ceramics. J Am CeramSoc, 2007, 90: 3496-3502.
14、ZhenY, Li J F, Zhang H. Electrical and elastic properties of 1-3PZT/epoxy piezoelectric composites, J Electroceram, 21: 410-413(2008).
15、ZhenY, Li J F. Fabrication and electrical properties of fine-scale1-3 Piezoceramic/epoxy composites using (K,Na)NbO3-basedlead-free ceramics. Ferroelectrics, 2007, 358: 161-168.
16、ZhenY, Li J F. Dynamic properties of fine-scale 1-3 PZT/epoxypiezoelectric composites. Key Eng Mater, 2007, 336-338: 348-350.
17、ZhenY, Li AJ, Yin YS, Shi RX, Liu YC. Reactive and dense sintering ofreinforced-toughened B4C matrix composites. Mater Res Bull, 2004,39: 1615-1625.
18、ShenZ. Y, Zhen Y, Wang K and Li J F, Influence of SinteringTemperature on Grain Growth and Phase Structure ofCompositionally Optimized High Performance Li/Ta-Modified(Na,K)NbO3 Ceramics. Journal of the American Ceramic Society,92(8)1748-1752(2009).
19、LiJ F, Zhen Y, Zhang B P. Normal sintering of (K, Na)NbO3-basedlead-free piezoelectric ceramics. Ceram International, 34,783-786, (2008).