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Online since: May 2013
Authors: Guo Qin Liu, Xin Qi Liu, Lu Jing, Xue De Wang
Materials and methods Materials.
Journal of Synthetic Lubrication (1992), P : 145-161
Journal of the American Oil Chemists’Society, 85(9): 887-896.(2008) [4] Goud V V, Pranhan N C, Patwardhan A V.
Journal of the American Oil Chemists’Society, 83(7): 635-640.(2006) [5] Shiqi Xu.
Science, 292: 1139-1141.(2001) [10] Minghua Feng, Li Zhao, Xun Liang.
Online since: December 2011
Authors: Qian Guan, Xiao Hong Zhao, Jian Li
The quality of adsorption material 16 mg.
Until 30 years later, people discovered it could be used for many fields such as catalyst and its carrier, gelatinizing agent of rocket propulsion, solar collector, acoustic impedance coupling materials, and heat insulation.
Experimental Part Materials Experiment process Lignocellulose powder was self-made by our laboratory.
(1) Thereunto, A0 is the absorbance of blank test without the adsorption materials; Ax is the absorbance of the solution for different time.
Guo: Journal of Cellulose Science and Technology (In Chinese).
Online since: January 2012
Authors: Jie Zhang, Yuan Ling Huang
The rapid development of Chinese rare earth functional materials [J].
The application of rare earth functional materials [J].
Journal of Fuzhou University, 2002, 10: 607-609
Rare metal materials and engineering, 2009, 12 (2): 909-912
Jiangsu science and Technology Press, 1996, 10: 601-602
Online since: November 2011
Authors: Jia Liang Zhou, Shi Wei Li, Xiao Hua Gu, Bing Zheng
Preparation and Research of Anionic and Cationic Secondary modified Organophilic Montmorillonite GU XiaoHua1, a, LI ShiWei1, b, ZHENG Bing2, c, ZHOU JiaLiang1, d 1College of Material Science and Engineering, Qiqihar University, Qiqihar 161006, P.
Because of the special structure and lower prices of MMT, it was widely applied in polymer/MMT nanocomposites, and the preparation of MMT modified polymer is a hot spot of the current materials science field [3, 4].
[3] Yi Wang, Huixia Feng and Heming Luo: Journal of the Chinese Ceramic Society.
[4] Chenggang Liang, Mei Fan: Journal of Inner Mongolia University.
[5] Yifan Lin, Taijun Pan: Science and Technology in Chemical Industry.
Online since: November 2013
Authors: Nor Diyana Md Sin, M. Rusop, M.H. Mamat
ZnO is an n-type semiconductor material with wide band gap energy of 3.37 eV and large exciton binding energy of 60meV [1].
Acknowledgement The author would like to express her thanks to Institute of Science and Faculty of Mechanical UiTM for providing the laboratory facilities.
Hahn, Zinc oxide nanostructures and their applications, Korean Journal of Chemical Engineering, 28 (2011) 1797-1813
Boulmer-Leborgne, Structural properties of ZnO films grown by picosecond pulsed-laser deposition, Applied Surface Science, 258 (2012) 9112-9115
Musa,, M.Rusop, Effect of RF Power to the Properties of ZnO Thin Films Deposited by Magnetron Sputtering, Advanced Materials Research, 364 (2012) 119-123
Online since: March 2015
Authors: Yong Jian Yu, Zhan Feng Si, Wei Ma
China 2Henan Key Laboratory for Machinery Design and Transmission System, Henan University of Science and Technology, Luoyang 471003, P.R.
modulus of materials --Poisson's ratio -- curvature, --deformation coefficient The (i)th rolling element contact force: =1 2 3…… (8) Indicates that only one positive value in brackets,if the expression in brackets is negative or zero =0 The non-linear bearing force: =1 2 3…… (9) Dynamic equations of spindle-bearing system (10) c: damping m: system quality k=7.055×109N/m1.5 m=12.5kg F=5.5N .
Journal of Sound and Vibration, 2000, 238(5): 757-779
Part K: Journal Multi body Dynamics, 2003, 217,201:213-223
Part K: Journal Multi body Dynamics, 2003, 217: 213-223
Online since: November 2007
Authors: Seung Ho Lee, Tae Young Kwon, So Ik Bae, Gun Ho Lee, In Jung Kim, Tae Gon Kim, Jin Goo Park
Experimental Materials and Procedure The cleaning experiments were carried out in class 100 and class 10 cleanroom.
Kuniyasu: Journal of the Electrochemical Society 149-9 (1998), p. 3278-3284 [2] M.
Park: Japanese Journal of Applied Physics 36-9 (1997), p. 5416-5420 [4] Kern, W.: Handbook of Semiconductor Wafer Cleaning Technology - Science, Technology and Applications (William Andrew Publishing, 1993) [5] Hattori, T.: Solid State Technology 42 (1999), p. 73-80 [6] Masten, S.
J. and Hoigne, J.: Ozone-Science & Engineering 14 (1992), p. 197-214 [7] Y.
Papko: Journal of Applied Chemical, USSR 30 (1957) [10] D.
Online since: November 2007
Authors: Lan Li, Xiao Song Zhang, Zhi Wang, Dong Qing Dong, Xiao Yi Dong
Luminescence Properties of ZnS:Mn Quantum Dots Xiaosong Zhang 1, 2 , Lan Li1 , Dongqing Dong1, Zhi Wang 2, and Xiaoyi Dong2 1 Tianjin Key Laboratory for Photoelectric Materials and Devices, Tianjin University of technology, Tianjin 300191, China 2 Key Laboratory of Opto-electronic Information and Technology, Institute of Modern Optics, Nankai University, Tianjin 300071, China email: zhangxiaosong@tjut.edu.cn Keywords: ZnS:Mn quantum dots, aqueous medium, photoluminescence, picosecond laser Abstract.
Mn-doped ZnS semiconductor quantum dots, as one kind of the typical semiconductor materials possessing the unique properties of quantum dots, have been intensively studied.
Acknowledgements The authors are grateful to the Tianjin Natural Science Foundation (Grant No. 07JCYBJC06400), the National Key Basic Research and Development Program of China (Grant No. 2003CB314906) and the National Natural Science Foundation of China (Grant No. 10674074).
References [1] Lixin Cao, and Shihua Huang: Journal of Luminescence, Vol. 114 (1992), p. 293 [2] W.Q.
Rosenthal: Journal of American chemical society, Vol. 127 (2005), p. 15378 [5] D.V.
Online since: December 2012
Authors: Zhi Guo Yang, Shui Yuan Tang, Jian Hua Zuo, Hong Li Fan, Lian Hong Wang, Zhong Hua Jian
Parts are made from the material blank and machining features.
Journal of Xi’an Jiaotong University, 20085 (42): 578-582
Journal of Yanshan University, 2005(03)
Journal of Yuzhou University (Natural Sciences Edition),2003(01)
Practical Teaching Materials of Secondary Development Based on Pro /E Wildfire 4.0 [M] Beijing: Peking University Press, 2003.
Online since: December 2012
Authors: Xi Rui Zhang, Jun Pu Weng, Ya Qian Zhang
It would be a waste of time, and a waste of human and material resources.
Acknowledgements Authors like to acknowledge Startup foundation of National Natural Science Foundation of China (Grant Nos.51105123), National Department Public Benefit Research Foundation (No. 201203072), Key Science and Technology Project of Hainan Province(No.
Journal of Gansu Agricultural University,2003, 38(4) :467-470
Jiangxi Forestry Science and Technology, 2005(2) : 24-26
Journal of Chongqing University, 2005, 11(2):23–26