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Online since: August 2011
Authors: Jing Li, Xiao Dong Zhao
Investigation of annealing effect on the electrical and optical properties of ITO film prepared by sol-gel process LI Jing, Zhao Xiao-dong School of Materials Science and Engineering, Southwest University of science and technology, Mianyang, Sichuan 621000, China; Key words: ITO film;annealing effect;electrical and optical properties;sol-gel process; Abstract.
This paper describes the deposition of ITO films by the sol-gel process using low-cast metal salts and organic solvents as raw materials.
Summary This work was financially supported by the doctoral Foundation of (09zx0028) Southwest University of science and technology, Correspondence: Li Jing ,PhD ; Tel:+86-015983676338; E-mail:xy13787103391@126.com Reference [1] F.zhu, C.H.A.Huan,K.Zhang.investigation of Annealing Effects on Indium Tin Oxide Thin Films by Electron Energy Loss Spectroscopy[J].Thin Solid Film ,2000,359:244-247
The Chinese Journal of Nonferrous Metals, 2005,1:123-126.
Online since: October 2010
Authors: Liang Dong, Yong Liu, Rui Wang, Jie Fan, Ru Dong Chen
Allometric scaling relationship between solution concentration and nanofiber diameter in bubble electrospinning and its experimental verification Yong Liu1,2 a, Liang Dong1,2 , Jie Fan1,2 , Rui Wang1,2 and Ru-dong Chen3 1 Tianjin and Ministry of Education Key Laboratory of Advanced Textile Composite Materials, Tianjin Polytechnic University, Tianjin 300160, China 2 School of Textiles, Tianjin Polytechnic University, 63 Chenglin Road, Hedong District, Tianjin, 300160, China 3 School of Science, Tianjin Polytechnic University, 63 Chenglin Road, Hedong District, Tianjin, 300160, China aemail: liuyong@tjpu.edu.cn, bemail: dl101130@126.com, cemail: fanjie@tjpu.edu.cn Keywords: nanofibers, Bubble electrospinning, scaling law, concentration, diameter.
Solution reservoir Power supply Gas pump Gas tube bubble jets Collector Fig. 1 Schematic drawing of bubble electrospinning process Materials.
The present work is supported by Key Project of Chinese Ministry of Education No.210006, National Science Foundation of Tianjin No.10JCYBJC02200, Tianjin Universities Science and Technology Development Fund Project No.20080322.
Yu, Journal of Physics: Conference Series: Vol. 96 (2008), p.012001
Online since: August 2014
Authors: Shi Guo Sun, Meng Meng Cui, Shao Jie Feng, Xue Fang Zhao
Acknowledgements Supported by Beijing Higher Education Young Elite Teacher Project (YETP1440), China Natural Science Foundation (41172250), “Twelfth Five-year” National Science and Technology Support Project (2012BAK09B06),Beijing Science and Technology Achievement Transformation Project.
Advanced Materials Research Vols.734-737 (2013) [3] Shaojie Feng, Xuefang Zhao, Shiguo Sun.
Advanced Materials Research.(2014) [4] Sun Shiguo, Fan Caibing, Li Zhanke, Lu Hai.Metal Mine,(2010): P.36.
Journal of Rock Mechanics and Geotechnical Engineering , (2011).P.2103 (In Chinese)
Online since: February 2013
Authors: Li Bin Niu, Ming Zhu, Hui Cai, Zhi Hu Wang, Jumei Zhang
.% NaCl Jumei Zhang 1,a, Zhihu Wang 2,b, Hui Cai1, Ming Zhu1,Libin Niu 1 1School of Materials Science and Engineering, Xi’an University of Science & Technology, Xian 710054,China; 2School of Materials Science and Engineering, Xi’an University of Technology, Xian 710048,China afeiyue-zjm@163.com, bzhihu_wang@163.com Keywords: magnesium alloy;corrosion behavior; microstructure Abstract.
Acknowledgements This work was financially supported by the Natural Science Foundation of Shanxi Province (Grant No.2012JQ6020),the National Natural Science Foundation of China (Grant No. 51201131) and the Doctor Foundation of Xian University of Science & Technology of China (2011QDJ017).
Nonferrous Met.Soc.Vol.13(2003),p. 1253 [3] A.K.Dahle, Y.C.Lee, M.D.Nave, P.L.Schaffer and D.H.Stjohn: Journal of Light Metals.Vol.1 (2001), p.61 [4] J.Edward, K.Vinarci: Light metal age.Vol.4(2001),P.74 [5] M.Dwain, A.Magers: Light Metal Age.Vol.5(1996),P.60 [6] M.C.
Andrej: Corrosion Science.Vol.50(2008),P.1939 [7] T.
Wang: Corrosion Science.Vol.48(2006),P.1249 [8] R.Ambat,N.N.Aung,W.Zhou:Corrosion Science.Vol.42(2000),P.1433
Online since: November 2012
Authors: Shan Qing Li, Ping Ping Li, Hong Yuan
Ye: Elasticity Mechanics (Science Press, Beijing 1960) (In Chinese)
Yuan: Applied Mechanics and Materials, Vol.117-119 (2012), p.456 [14] S.Q.
Yuan: Applied Mechanics and Materials, Vol.138-139 (2012), p.705 [15] S.Q.
Yuan: Advanced Materials Research, Vol.446-449 (2012), p.3582 [16] S.Q.
Yuan: Advanced Materials Research, Vol.468-471 (2012), p.8 [17] V.L.
Online since: June 2012
Authors: Qiang Xia, Hong Jing Zhou, Fang Tian, Li Chen, Wei Hua Li, Xun Cheng Ding
The stability study of Nifeviroc-loaded microemulsions Hongjing Zhou1, 2, 3, a, Fang Tian4,b, Qiang Xia 1, 2, 3, c , Li Chen5,d, Weihua Li4,e, Xuncheng Ding4,f 1School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China 2State Key Laboratory of Bioelectronics, Southeast University, Nanjing 210096, China 3Suzhou Key Lab of Biomedical Materials and Technology, Suzhou 215123, China 4Shanghai Institute of Planned Parenthood Research, Shanghai 200032,China 5Shanghai Targetdrug co., Ltd., Shanghai 200032,China axingleiyuyue@163.com, biamtianfang@gmail.com, cxiaq@seu.edu.cn, dchenli@targetdrug.com, eiamliweihua@yahoo.com, ffangtian85@yahoo.cn Keywords: Nifeviroc, microemulsion, dilution stability, centrifugal stability, storage stability Abstract.
Materials and methods Materials.
Caster oil, PEG-400, Cremophor EL were purchased from Beijing Fengli Jingqiu Commerce and Trade Co., Ltd (Bejing, China).All the materials were pharmaceutical-grade.
Acknowledgements Financial support from International Cooperation Project (2008DFB50060) and Shanghai Science and Technology Commission Project (1052nm05600) is gratefully acknowledged.
Journal of Pharmaceutical and Biomedical Analysis. 56 (2011) 637-640 [4] Grampurohit N, Ravikumar P, Mallya R, Microemulsions For Topical Use-A Review, J.
Online since: March 2007
Authors: Jun Jie Qi, Yun Hua Huang, Yue Zhang, Juan Liu, Xiao Mei Zhang
Department of Materials Physics, University of Science and Technology Beijing, Beijing 100083, People's Republic of China; 2.
State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083, People's Republic of China a liujuanustb@163.com, b Yuezhang@ustb.edu.cn Keywords: In-doped; ZnO; nanodisk Abstract.
Such well-structured materials have potential applications as building blocks in modern nanoelectronics.
Heo, et al., Materials today 2004, June: 34 [2] T.
Journal of Applied Physics, 1996, 79: 7983.
Online since: September 2014
Authors: Guang Ping Zou, Peng Wang, He Zhang Cheng
Acknowledgements This work was financially supported by the National Science Foundation of China (11372081).
Journal of Automobile Engineering, 2011, 1(3): 226-229
Experiment With Simulation Cabin Hull Material Selection and Structure Design [J].
Sandwich Materials Development and Protective Structure Application Were Reviewed [J].
Ordnance Material Science and Engineering, 2010, 33(4): 91-96.
Online since: April 2015
Authors: Hong Ye, Yi Ping Liao, Yu Wang
The efficiency of the pervaporation process is mainly determined by membrane materials, so it is of great importance to develop novel materials for pervaporation with high permeability and selectivity.
Experimental Materials.
The authors greatly appreciated the financial supports of National Natural Science Foundation of China (No.20906001),The Importation and Development of High-Caliber Talents Project of Beijing Municipal Institutions (CIT&TCD201404032) and Beijing Natural Science Foundation (L140009).
The Chinese Journal of process Engineering,2007
Advanced Materials Research Vol. 304 (2011) pp 219-223.
Online since: January 2011
Authors: Šárka Houdková, František Zahálka, Michaela Kašparová
Introduction The high hardness and the resistance against the spreading of cracks are crucial properties of all kinds of materials, intended as wear resistant.
Lasage: Materials Science and Engineering A 527 (2009), p.65-76 [7] C.
Rawlings: Material Science and Technology, Vol. 5,(1989), p. 865 [8] C.
Caram: Journal of Alloys and Compounds 472 (2009), p. 65 [9] Š.
Kašparová: Materials Science Forum Vols. 567-568 (2007), p. 229 [10] Š.