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Online since: March 2013
Authors: Hui Yong Hu, Bin Wang, He Ming Zhang, Nan Meng, Xu Jia Shi, Rong Xi Xuan
Research on Electron Mobility Model for Tensile Strained-Si(101) with Properties of Semiconducting Materials
Meng Nan1,a,Huiyong Hu2,b,Heming Zhang3,c,Xujia Shi4,d,
Rongxi Xuan5,e,Wang bin6,f
Key Laboratory for Wide Band-Gap Semiconductor Materials and Devices,School of Microelectronics, Xidian University, Xi’an, 710071, Peoples R China
a13468710011@163.com,bhuhy@xidian.edu.cn,chmzhang@xidian.edu.cn,dshixujia2007@163.com, exxx6688518@163.com,fwbin0316@126.com
Keywords: Tensile Strain; Electron; Mobility
Abstract.
K5051225014 and K5051225004) and Natural Science Basic Research Plan in Shaanxi Province of China (No.2010JQ8008).
Microelectron Eng, 2009, 86(3): 218 [5] Hu,Huiyong ; Zhang, Heming ; Dai, Xianying Chinese Journal of Semiconductors v 26, n 4, p 641-644, April 2005 [6] J.J.
[14] Song JianJun, Yang Chao, Zhang HeMing, Hu HuiYong, Zhou CHunYu & Wang Bin, Science in China, Physics Mechanics and Astronomy.
Vol. 55 (2012) , p .2033 [15] Song JianJun, Zhang HeMing, Hu HuiYong and Fu Qiang, Science in China, Series G: Physics, Mechanics and Astronomy.
K5051225014 and K5051225004) and Natural Science Basic Research Plan in Shaanxi Province of China (No.2010JQ8008).
Microelectron Eng, 2009, 86(3): 218 [5] Hu,Huiyong ; Zhang, Heming ; Dai, Xianying Chinese Journal of Semiconductors v 26, n 4, p 641-644, April 2005 [6] J.J.
[14] Song JianJun, Yang Chao, Zhang HeMing, Hu HuiYong, Zhou CHunYu & Wang Bin, Science in China, Physics Mechanics and Astronomy.
Vol. 55 (2012) , p .2033 [15] Song JianJun, Zhang HeMing, Hu HuiYong and Fu Qiang, Science in China, Series G: Physics, Mechanics and Astronomy.
Online since: November 2012
Authors: Cibeli B. Garcia, Edith Ariza, Carlos J. Tavares
Rech, Transparent Conductive Zinc Oxide: Basics and Applications in Thin Film Solar Cells, Springer Series in Materials Science 104, published by Springer, Berlin, Germany (2008)
Yin, Effect of ZnO buffer layer on AZO film properties and photovoltaic applications, Journal of Material Science, 21 (2010) 1005-1013
Park, The influence of substrate temperature on the properties of aluminum-doped zinc oxide thin films deposited by DC magnetron sputtering, Journal of Material Science, 17 (2006) 973–977
Ohring, Materials science of thin films, Second edition, Academic Press, San Diego, 1992
Kang, Influence of the substrate temperature on the optical and electrical properties of Ga-doped ZnO thin films fabricated by pulsed laser deposition, Journal of Material Science, 20 (2009) 704–708
Yin, Effect of ZnO buffer layer on AZO film properties and photovoltaic applications, Journal of Material Science, 21 (2010) 1005-1013
Park, The influence of substrate temperature on the properties of aluminum-doped zinc oxide thin films deposited by DC magnetron sputtering, Journal of Material Science, 17 (2006) 973–977
Ohring, Materials science of thin films, Second edition, Academic Press, San Diego, 1992
Kang, Influence of the substrate temperature on the optical and electrical properties of Ga-doped ZnO thin films fabricated by pulsed laser deposition, Journal of Material Science, 20 (2009) 704–708
Online since: November 2010
Authors: Zheng Ye Xiong, Ping Ding, Qiang Tang, Jing Min Chen, Wen Qing Shi
Lithium tetraborate based TL dosimeters, has attracted much attention as radiation proof materials for optical devices and tissue-equivalent material for radiation dosimetry because of the effective atomic number (Zeff) of 7.3 [5].
Materials and methods Preparation.
Lyamayev: Journal of physics and chemistry of solids, Vol. 68(2007), p. 1305 [5] Z.
Xu: Journal of synthetic crystals, Vol. 38(2009), p. 591 [8] S.
Townsend: Thermoluminescence Dosimetry Materials: Properties and Uses (Nuclear Technology Publishing, Ashford, UK 1995)
Materials and methods Preparation.
Lyamayev: Journal of physics and chemistry of solids, Vol. 68(2007), p. 1305 [5] Z.
Xu: Journal of synthetic crystals, Vol. 38(2009), p. 591 [8] S.
Townsend: Thermoluminescence Dosimetry Materials: Properties and Uses (Nuclear Technology Publishing, Ashford, UK 1995)
Online since: October 2010
Authors: Rômulo Crespo Tardim, Ana Lúcia Diegues Skury, Guerold Sergueevitch Bobrovinitchii, Sérgio Neves Monteiro, William Silva Vianna
Belousov: Journal of Superhard Materials Vol. 4 (1987), p. 9.
3.
Tsurumi:Diamond and Related Materials Vol. 8 (1999), p. 2036. 8.
Kotenko: Compilation of Scientific Works from the Institue for Superhard Materials from National Science Academy of Kiev – Ukraine (2003), p. 179-184. 9.
Belovol, “Novel hydraulic presses for superhard materials production”.
Novikov: Diamond and Related Materials Vol. 8 (8-9) (1999), p. 1427. 13.
Tsurumi:Diamond and Related Materials Vol. 8 (1999), p. 2036. 8.
Kotenko: Compilation of Scientific Works from the Institue for Superhard Materials from National Science Academy of Kiev – Ukraine (2003), p. 179-184. 9.
Belovol, “Novel hydraulic presses for superhard materials production”.
Novikov: Diamond and Related Materials Vol. 8 (8-9) (1999), p. 1427. 13.
Online since: March 2012
Authors: Feng Chun Wei, You Zhou Jiao, Xiu Li Zhang
Introduction
Fiber reinforced composite materials (FRP) were made by using hard fibers for soft reinforcing plastic resin matrices.
The interface between glass fibers and matrix materials in this paper is weakly connected; the interface bonding strength is low.
Beaumont, Micro-mechanical theory of macroscopic stress-corrosion cracking in unidirectional GFRP, Journal of Materials Science.2006(41), 4604-4610, DOI: 10.1007/s10853-006-0328-9 [5] H.
Beaumont, Micromechanically derived lowest threshold stress intensity factor for macroscopic stress-corrosion cracking in unidirectional GFRP composites, Journal of Materials Science. 2010(45):5988–5992, DOI 10.1007/s10853-010-4802-z [6] Xiuli Zhang,Changhong Jin,Zhenguo Zhang, Study on incision of glass fiber-reinforced composites (in Chinese), Journal of Functional Materials. 2010(3):505-507 [7] Xiuli Zhang,Chaohui Xie,Heng Zhang, An experimental investigation into the machining quality of composites influenced by fiber orientation (in Chinese), China Mechanical Engineering. 2009,20(21):2617-2620 [8] Xiuli Zhang,Liang Yan, Hongmei He, Study on the orthogonal cutting technologies of GFRP (in Chinese), Materials Review. 2011,25(5):59-61
[9] Xiuli Zhang,Zhenguo Zhang,Fengchun Wei, Study on milling of glass fiber-reinforced composites (in Chinese), Materials Review. 2009,23(4):84-87 [10] Zhifang Yang, Xiuli Zhang,Heng Zhang, Experiment study of drilling thick composite laminates (in Chinese), Journal of Henan University of Science and Technology Natural Science. 2008(1):1-5 [11] Lijun He,Guozhi Lv, Analysis of partly bridge-toughening in fiber-reinforced composites (in Chinese), Ningxia Engineering Technology. 2002,1(3):208-211
The interface between glass fibers and matrix materials in this paper is weakly connected; the interface bonding strength is low.
Beaumont, Micro-mechanical theory of macroscopic stress-corrosion cracking in unidirectional GFRP, Journal of Materials Science.2006(41), 4604-4610, DOI: 10.1007/s10853-006-0328-9 [5] H.
Beaumont, Micromechanically derived lowest threshold stress intensity factor for macroscopic stress-corrosion cracking in unidirectional GFRP composites, Journal of Materials Science. 2010(45):5988–5992, DOI 10.1007/s10853-010-4802-z [6] Xiuli Zhang,Changhong Jin,Zhenguo Zhang, Study on incision of glass fiber-reinforced composites (in Chinese), Journal of Functional Materials. 2010(3):505-507 [7] Xiuli Zhang,Chaohui Xie,Heng Zhang, An experimental investigation into the machining quality of composites influenced by fiber orientation (in Chinese), China Mechanical Engineering. 2009,20(21):2617-2620 [8] Xiuli Zhang,Liang Yan, Hongmei He, Study on the orthogonal cutting technologies of GFRP (in Chinese), Materials Review. 2011,25(5):59-61
[9] Xiuli Zhang,Zhenguo Zhang,Fengchun Wei, Study on milling of glass fiber-reinforced composites (in Chinese), Materials Review. 2009,23(4):84-87 [10] Zhifang Yang, Xiuli Zhang,Heng Zhang, Experiment study of drilling thick composite laminates (in Chinese), Journal of Henan University of Science and Technology Natural Science. 2008(1):1-5 [11] Lijun He,Guozhi Lv, Analysis of partly bridge-toughening in fiber-reinforced composites (in Chinese), Ningxia Engineering Technology. 2002,1(3):208-211
Online since: June 2014
Authors: Jing Tao Han, Jing Liu, Xiao Xiong Wang, Qian Liu
Chan: Journal of Materials Processing Technology,Vol. 86 (1999), p.163
[2] M.
Bressan: Journal of Materials Processing Technology, Vol. 125 (2002), p.206 [3] F.
Roizard: Journal of Materials Processing Technology, Vol. 186 (2007), p.27 [4] A.
Hambli: Journal of Materials Processing Technology, Vol. 177 (2006), p.287 [7] H.
Baaijens: Journal of Materials Processing Technology, Vol. 110 (2001), p.312 [10] H.
Bressan: Journal of Materials Processing Technology, Vol. 125 (2002), p.206 [3] F.
Roizard: Journal of Materials Processing Technology, Vol. 186 (2007), p.27 [4] A.
Hambli: Journal of Materials Processing Technology, Vol. 177 (2006), p.287 [7] H.
Baaijens: Journal of Materials Processing Technology, Vol. 110 (2001), p.312 [10] H.
Online since: November 2016
Authors: Priscilla Gloria Lorraine Baker, Francis Ntumba Muya, Emmanuel Iheanyichukwu Iwuoha, Xolani Terrance Ngema
Journal of Surface Engineered Materials and Advanced Technology., 2014(4): p. 227-236
Journal of Hazardous Materials, 2010. 177(1–3): p. 251-259
Journal of Applied Polymer Science, 2011: p. n/a
Journal of Radiation Research and Applied Sciences, 2014. 7(2): p. 135-145
Archives of metallurgy and materials 2014. 59(3): p. 872-877.
Journal of Hazardous Materials, 2010. 177(1–3): p. 251-259
Journal of Applied Polymer Science, 2011: p. n/a
Journal of Radiation Research and Applied Sciences, 2014. 7(2): p. 135-145
Archives of metallurgy and materials 2014. 59(3): p. 872-877.
Online since: September 2011
Authors: Wen Gui Su, Pin Pin Qin, Li Li, Xiong Huang
To maintain JIT production, required parts and materials must reach the production line in time.
Raw materials and parts are supplied by the third party logistics (3PLs) that located near the plant.
This modules is designed for the management of distribution process, it contains four sub-systems: Material Management: arranging materials distribution planning, parts matching examination, materials integrity checking.
Tourassis: International Journal of Production Research, Vol. 48 (2010) No.10, p.2887
Panneerselvam: International Journal of Advanced Manufacturing Technology Vol. 32 (2007), p.393
Raw materials and parts are supplied by the third party logistics (3PLs) that located near the plant.
This modules is designed for the management of distribution process, it contains four sub-systems: Material Management: arranging materials distribution planning, parts matching examination, materials integrity checking.
Tourassis: International Journal of Production Research, Vol. 48 (2010) No.10, p.2887
Panneerselvam: International Journal of Advanced Manufacturing Technology Vol. 32 (2007), p.393
Online since: October 2018
Authors: Vladimir A. Irkha, Adnan A.A. Mohamed, S.N. Chebotarev
Introduction
Nanostructured materials are objects of close scientific interest [1-3].
The data obtained for the selected model materials are shown in Figure 1.
For the selected materials, the sputtering coefficient is less than one.
Erimeev, Zone thermal recrystallization of thin layers from a discrete source, ARPN Journal of Engineering and Applied Sciences, 12 (2017) 1453-1457
Arustamyan, Microcrystalline and amorphous photovoltaic silicon materials Performance optimization, Materials Science Forum, 870 (2016) 74-82
The data obtained for the selected model materials are shown in Figure 1.
For the selected materials, the sputtering coefficient is less than one.
Erimeev, Zone thermal recrystallization of thin layers from a discrete source, ARPN Journal of Engineering and Applied Sciences, 12 (2017) 1453-1457
Arustamyan, Microcrystalline and amorphous photovoltaic silicon materials Performance optimization, Materials Science Forum, 870 (2016) 74-82
Online since: May 2013
Authors: Zuo Qi Liu
INTRODUCTION
Discontinuously reinforced metal-matrix composites (MMCs) based on aluminium alloy are recognized as the potential new generation brake disc materials [1,2].
The material is prepared by a liquid agitating method.
Composites Science and Technology, 59, 147-155, 1999
Prediction of damage evolution in forged aluminum metal matrix composites using a neural network approach, Journal of Materials Processing Technology, 80-81, 507-512, 1998
Doong, High strain rate tensile properties of an (Al2O3 particles)-(Al alloy 6061-T6) metal matrix composite, Materials Science and Engineering, 1-2, 213-221, 1993
The material is prepared by a liquid agitating method.
Composites Science and Technology, 59, 147-155, 1999
Prediction of damage evolution in forged aluminum metal matrix composites using a neural network approach, Journal of Materials Processing Technology, 80-81, 507-512, 1998
Doong, High strain rate tensile properties of an (Al2O3 particles)-(Al alloy 6061-T6) metal matrix composite, Materials Science and Engineering, 1-2, 213-221, 1993