姚曼文 研究员
日期:2015年11月28日 11:11     点击:[]

 

姓名:姚曼文

职称:研究员

电子邮箱:yaomw@tongji.edu.cn

办公地点:上海市曹安公路4800号,同济大学嘉定校区,同心楼408  

电话:15026662692  

传真:  

课题组主页:  

 

研究方向:

1. 介电材料与介电储能  

2. 压电与铁电材料  

3. 发光材料  

 

学习工作经历:

姚曼文,女,研究员,博士生导师。1987-1991就读于山东大学,获理学学士学位;于1995年就读于美国宾夕法尼亚州州立大学材料研究所,获材料科学硕士学位;于2001年就读于美国休斯敦大学电子工程与计算机系,获博士(PhD)学位。其间曾在西安理工大学和新加坡材料与工程研究所工作。于200911月进入同济大学工作,曾先后主持国家自然科学基金2项,上海市自然科学基金,总装备部预研基金项目,教育部留学基金及校企产学研项目,作为骨干成员参与973课题及科技部中外合作专项。

授课情况:

传感器与换能器(研究生,英语)

材料科学导论(研究生)

 

 

代表性论文:

1. Yao MW*, Su Z, Zou P, et al. “Dielectric properties under high electric field for silicon doped alumina thin film with glass-like structure derived from sol-gel process”, Journal of Alloys and Compounds, 690, 249-255, (2017).

2. Yao MW*, Chen JW, Su Z, et al. “Ionic transport and barrier effect of anodic oxide layer in a solid-state Al2O3 capacitor under high electric field”, Electrochimica Acta, 224, 235-242, (2017).

3. Li F, Yao MW*, Su Z, et al. “Enhancement of breakdown strength of SrTiO3/nano-SiO2 composite film prepared by sol-gel technology”, Ceramics International, 43, 3495-3500, (2017).

4. Yao MW*, Chen JW, Su Z, et al. “Anodic oxidation in aluminum electrode by using hydrated amorphous aluminum oxide film as solid electrolyte under high electric field”, ACS Applied Materials & Interfaces, 8, 11100-11107, (2016).

5. Yao MW*, Peng Y, Xiao RH, et al. “Enhanced self-repairing capability of sol-gel derived SrTiO3/nano Al2O3 composite films”, Applied Physics Letters, 109, 092904, (2016).

6. Yao MW*, Zou P, Su Z, et al. “The influence of yttrium on leakage current and dielectric properties of amorphous Al2O3 thin film derived by sol-gel”, Journal of Materials Science: Materials in Electronics, 27, 7788-7794, (2016).

7. Zou P, Yao MW*, Chen JW, et al. “Leakage current and dielectric breakdown in lanthanum doped amorphous aluminum oxide films prepared by sol-gel”, Ceramics International, 42, 4120-4125, (2016).

8. Peng Y, Yao MW*, Chen JW, et al. “Electrical characteristics of SrTiO3/Al2O3 laminated film capacitors”, Journal of Applied physics, 120, 014102, (2016).

9. Peng Y, Yao MW*, Li F, et al. “Dielectric breakdown characteristics of sol-gel derived SrTiO3 films”, Journal of Materials Science: Materials in Electronics, 27, 8100-8104, (2016).

10. Yao MW*, Hu BF, Xiao RH, et al. “Effect of Al films as bottom electrode material on the breakdown strength of Al2O3 thin films prepared via a sol-gel process”, Journal of Alloys and Compounds, 646, 387-392, (2015).

11. Yao MW*, Xiao RH, Peng Y, et al. “The influence of titanium doping on the electric properties of amorphous alumina films prepared by sol-gel technology”, Journal of Sol-Gel Science and Technology ,74, 39-44, (2015).

12. Yao MW*, Wu YC, Fang XY, et al. “Spectral surface plasmon resonance imaging for the detection of clenbuterol via three-dimensional immobilization of bioprobes”, Analytical Biochemistry, 475, 40-43, (2015).

13. Xu KE, Yao MW*, Chen JW, et al. “Effect of crystallization on the band structure and photoelectric property of SrTiO3 sol-gel derived thin film”, Journal of Alloys and Compounds, 653, 7-13, (2015).

14. Wu YC, Yao MW*, Fang XY, et al. “Clenbuterol assay by spectral imaging surface plasmon resonance biosensor system”, Applied Biochemistry and Biotechnology, 177, 1327-1337, (2015).

15. Hu BF, Yao MW*, Xiao RH, et al. “Self-repiaring characteristics in the solid-state Al2O3 film capacitors”, Applied Physics Letters, 105, 033902, (2014).

16. Chen JW, Yao MW*, Xiao RH, et al. “The application of the barrier-type anodic oxidation method to thickness testing of aluminum films”, Review of Scientific Instruments, 85, 094101, (2014).

17. Yang PF, Yao MW*, Xiao RH, et al. “Preparation of Al2O3 film by sol-gel method on thermally evaporated Al film”, Vacuum, 107, 112-115, (2014).

18. Hu BF, Yao MW*, Xiao RH, et al. “Optical properties of amorphous Al2O3 thin films prepared by a sol-gel process”, Ceramics International, 40, 14133-14139, (2014).

19. Yao MW*, Zheng Y and Yao. X “A study on PZT-Epoxy piezoelectric composites by dynamic mechanical analyzer”, Ferroelectrics, 457, 69-75, (2013).

 

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