科研成果 | [1] Yongmao Hu, Ruheng Li, Xueqing Zhang, Yan Zhuc and Heng-Yong Nie*, Aluminium films roughened by hot water treatment and derivatized by fluoroalkyl phosphonic acid: wettability studies, Surface Engineering, 36(6): 589–600 (2020). [2] J.C. Liu, L.K.Wei, S.H. Sun, Y Zhu, Y.M. Hu*, An effective approach to bandgap tuning for Cu3SnS4 by manganese doping, Material Research Express, 6: 125038 (2019). [3] Z.E. Zhao, S.H. Sun, Y.M. Hu*, Y. Zhu*, Robust superamphiphobic aluminum surfaces: fabrication and investigation, Journal of Coatings Technology and Research, 16 (6): 1707–1714 (2019). [4] Y. Zhu, L. Ma, H.-Y. Nie, W.M. Lau, Y.M. Hu*, Ultra-repellency of Al surfaces: design and evaluation, Journal of Coatings Technology and Research, 15(3): 633~641 (2018). [5] R. Deng, Y.M. Hu*, L. Wang, Zh.H. Li, T. Shen, Y. Zhu*, J.Zh. Xiang*, An easy and environmentally-friendly approach to superamphiphobicity of aluminum surfaces, Applied Surface Science, 402, 301-307 (2017). [6] Y. Zhu, Y.M. Hu*, H.-Y. Nie, W. Zhou and J.H. Yi. Superhydrophobicity via organophosphonic acid derivatised aluminium films, Surface Engineering, 32(2): 114-118 (2016). [7] Y. M. Hu, Y. Zhu, W. Zhou, H. Wang, J.H. Yi, S.S. Xin, W.J. He, T. Shen. Dip-coating for dodecylphosphonic acid derivatization on aluminum surfaces: an easy approach to superhydrophobicity, Journal of Coatings Technology and Research, 13: 115-121 (2016). [8] Y.M. Hu, R.H. Li, Y. He, X.Q. Zhang, M.Q. Li, Y. Zhu?, J.H. Yi, R.Ch. Fu. Molecular beam deposition and polymerization of parylene-N ultrathin films: Effective buffers in organic light emitting diodes, Applied Surface Science, 314: 1070–1073 (2014). [9] Y.M. Hu, Y. He, X. Q. Chen, Y.Q. Zhan, Z.Y. Sun, Y.T. You, and X.Y. Hou*. Obvious efficiency enhancement of organic light-emitting diodes by parylene-N buffer layer, Applied Physics Letters, 100, 163303 (2012). [10] Y.M. Hu*, Y. He, X.Q. Chen, Y.Q. Zhan, Y.T. You, H.N. Xuxie, and H. Peng. Insertion of parylene-N films in electron transport layer: An effective approach for efficiency improvement of organic light emitting diodes, Journal of Applied Physics, 112, 104505 (2012). [11] Hu, Yongmao,Xiang, Jinzhong,Zhang, Xueqing, Li, Ruheng,Wu, Xinghui. A Study on Nanoscale Infrared Absorbent Working in Waveband Range of 1300-400 cm-1, JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 24(5): 750-752 (2008). [12] 胡永茂,李汝恒,何 鋆,张学清,李茂琼,朱 艳,聚对二甲苯薄膜的制备及其在有机电致发光二极管中的应用研究,应用光学, 35(4):663-669 (2014). |