杨如森
近期热点
资料介绍
个人简历
杨如森,“华山学者”特聘教授,博士生导师。分别于1998年、2001年在吉林大学获得物理专业学士学位和凝聚态物理硕士学位。2007年在美国佐治亚理工学院获得材料科学与工程博士学位;从事博士后研究3年后,2010年任美国明尼苏达大学机械工程学院助理教授,现任西安电子科技大学先进材料与纳米科技学院教授。研究领域
1. 智能生物材料的合成与表征2. 纳米发电机的设计与制备3. 先进传感器4. 纳米材料与先进制造技术近期论文
1. H. Hao; K. Jenkins, X. Huang; Y. Xu; J. Huang, R. Yang,.Piezoelectric potential in single-crystalline ZnO nanohelices based on finite element analysis. Nanomaterials 7, 430 (2017). 2. J. Kory, Y. Rusen, Mechanical transfer of ZnO nanowires for a flexible and conformal piezotronic strain sensor, Semicond. Sci. Technol. 32, 074004 (2017) 3. V. Nguyen, S. Kelly, R. Yang, Piezoelectric peptide-based nanogenerator enhanced by single-electrode triboelectric nanogenerator, APL Materials 5, 074108 (2017) 4. V. Nguyen, R. Zhu, K. Jenkins, R. Yang, Self-assembly of diphenylalanine peptide with controlled polarization for power generation. Nature Communications 7, 13566 (2016). 5. R. Zhu, K. Jenkins, R. Yang, Degradation and nano-patterning of ferroelectric P(VDF-TrFE) thin films with electron irradiation, RSC Advances, 5, 106700 (2015). 6. K. Jenkins, V. Nguyen, R. Zhu, R. Yang, Piezotronic effect: an emerging mechanism for sensing applications, Sensors 15, 22914 (2015). 7. H. Li, Y. Sang, S. Chang, X. Huang, Y. Zhang, R. Yang, H. Jiang, H. Liu, Z. L. Wang, Enhanced ferroelectric-nanocrystal-based hybrid photocatalysis by ultrasonic-wave-generated piezophototronic effect. Nano Lett. 15, 2372 (2015). 8. V. Nguyen, K. Jenkins, R. Yang, Epitaxial growth of vertically aligned piezoelectric diphenylalanine peptide microrods with uniform polarization, Nano Energy, 17, 323 (2015) 9. V. Nguyen, R. Zhu, R. Yang, Environmental effects on nanogenerators, Nano Energy, 14, 49 (2015). 10. R. Zhu, R. Yang, Separation of the piezotronic and piezoresistive effects in a zinc oxide nanowire, Nanotechnology 25, 345702 (2014). 11. R. Zhu, Y. Lai, V. Nguyen, R. Yang, Scalable alignment and transfer of nanowires in a spinning Langmuir film, Nanoscale 6, 11976 (2014). 12. W. Zhang, R. Zhu, V. Nguyen, R. Yang, Highly sensitive and flexible strain sensors based on vertical zinc oxide nanowire arrays, Sensors and Actuators A: Physical, 205, 164 (2014) 13. R. Zhu, W. Zhang, C. Li, R. Yang, Uniform Zinc Oxide Nanowire Arrays Grown on Nonepitaxial Surface with General Orientation Control, Nano Lett 13, 5171 (2013) 14. V. Nguyen, R. Yang, Effect of humidity and pressure on the triboelectric nanogenerator, Nano Energy, 2, 604 (2013) 15. R.S. Yang, One-Dimensional Nanostructures by Pulsed Laser Ablation, Science of Advanced Materials, 4, 401 (2012) 16. R. Zhu, W. G. Zhang, R. S. Yang, High Output Piezoelectric Nanogenerator: Development and Application, Sci Adv Mater 4, 798 (2012) 17. Y. Cheng, R. Yang, J.-P. Zheng, Z. L. Wang, P. Xiong, Characterizing individual SnO2 nanobelt field-effect transistors and their intrinsic responses to hydrogen and ambient gases, Mater Chem Phys, 137, 372 (2012) 18. G. Zhu, Y.S. Zhou, S.H. Wang, R.S. Yang, Y. Ding, X. Wang, Y. Bando, Z.L. Wang, Synthesis of vertically aligned ultra-long ZnO nanowires on heterogeneous substrates with catalyst at the root, Nanotechnology, 23, 055604 (2012) 19. H. L. Zhang, C. G. Hu, M. C. Zhang, R. S. Yang, C. H. Zheng, Synthesis of BaCO3 Nanowires and Their Humidity Sensitive Property, J. of Nanosci. and Nanotechno. 11, 10706 (2011) 20. Q.N. Yi, C.G.Hu, R.S. Yang, H. Liu, B.Y. Wan, Y. Zhang, Preparation of WO3 network squares for ultrasensitive photodetectors, J. Alloys Compd. 509, L255–L261 (2011)标签: 西安电子科技大学 先进材料与纳米科技学院
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