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Online since: March 2016
Authors: Marco Gigliotti, Yannick Pannier, Marie Christine Lafarie-Frenot, Jean Claude Grandidier
Perspectives include extending the approach to textile composite materials and performing mechanical and environmental tests within the micro-tomographic facilities.
Verpoest, Quasi-static and fatigue tensile behavior of a 3D rotary braided carbon/epoxy composite, Journal of Composite Materials, 47 (2013) 3195-3209
Luu, Multi-physical fatigue of laminated and textile organic composite materials for aircraft applications, 6th International Conference on Fatigue of Composites (ICFC6), Paris, France March 2015
Mendels, On the use of planar shear-lag methods for stress transfer analysis of multilayered composites, Mechanics of Materials, 33 (2001) 335–362
McCullough, Micromechanical materials modeling.
Verpoest, Quasi-static and fatigue tensile behavior of a 3D rotary braided carbon/epoxy composite, Journal of Composite Materials, 47 (2013) 3195-3209
Luu, Multi-physical fatigue of laminated and textile organic composite materials for aircraft applications, 6th International Conference on Fatigue of Composites (ICFC6), Paris, France March 2015
Mendels, On the use of planar shear-lag methods for stress transfer analysis of multilayered composites, Mechanics of Materials, 33 (2001) 335–362
McCullough, Micromechanical materials modeling.
Online since: July 2019
Authors: Fasai Wiwatwongwana, Yuttadet Morpara
Tissue engineering process has developed renewable materials used in a variety of applications.
Experimental Details Materials and Preparation of Gelatin/CMC Scaffold.
Pattana, “Identification of Shear Modulus of Gelatin Blended with Carboxymethylcellulose Scaffolds Using Curve Fitting Method from Compressive Test,” Journal of Materials Science Research, vol. 1, no.4, pp. 106-113, 2012
Ghaleh, “Microstructure and characteristic properties of gelatin/chitosan scaffold prepared by a combined freeze-drying/leaching method,” Materials Science and Engineering C 33 (2013) 3958-3967
Wiwatwongwana, “Mechanical property of gelatin/CMC nanofibrous scaffold fabricated by electrospinning method,” Science and Technology of Emerging Materials (STEMa2018), Pattaya, Thailand, 18-20 July, 2018
Experimental Details Materials and Preparation of Gelatin/CMC Scaffold.
Pattana, “Identification of Shear Modulus of Gelatin Blended with Carboxymethylcellulose Scaffolds Using Curve Fitting Method from Compressive Test,” Journal of Materials Science Research, vol. 1, no.4, pp. 106-113, 2012
Ghaleh, “Microstructure and characteristic properties of gelatin/chitosan scaffold prepared by a combined freeze-drying/leaching method,” Materials Science and Engineering C 33 (2013) 3958-3967
Wiwatwongwana, “Mechanical property of gelatin/CMC nanofibrous scaffold fabricated by electrospinning method,” Science and Technology of Emerging Materials (STEMa2018), Pattaya, Thailand, 18-20 July, 2018
Online since: July 2016
Authors: Hai Tao Yang, Ling Gao, Hai Peng Yang, Xue Xian Cai, Chao Xiao, Chen Bing Pi, Ji Hua Gao
Conclusions
(1) The optimum sintering temperature of the target materials doped with 1wt% TiO2 was 1350 °C
Lee, et al., Solar Energy Materials and Solar Cells. 128 (2014) 301-306
Karakaya, Journal of Magnetism and Magnetic Materials. 373 (2015) 33-39
Song, et al., Materials Science in Semiconductor Processing. 27 (2014) 1-11
Zhang, Materials Letters. 96 (2013) 237-239
Lee, et al., Solar Energy Materials and Solar Cells. 128 (2014) 301-306
Karakaya, Journal of Magnetism and Magnetic Materials. 373 (2015) 33-39
Song, et al., Materials Science in Semiconductor Processing. 27 (2014) 1-11
Zhang, Materials Letters. 96 (2013) 237-239
Online since: June 2014
Authors: Hong Li, Shi Wei Dong, Dan Feng Sun
Materials and Methods
The research adopted MODIS data product MOD13A3 from NASA MODIS data product distribution website.
Acknowledgements This work was financially supported by the Beijing Science and Technology Programs.
Chen: Advance in Earth Sciences Vol. 18 (2003), p. 85-93
[2] Q.Zhou, M Robson, P.Pilesjo: International Journal of Remote Sensing Vol.9(1998), p.1815-1820
Zhou: Resources Science Vol. 26 (2004), p. 153-159.
Acknowledgements This work was financially supported by the Beijing Science and Technology Programs.
Chen: Advance in Earth Sciences Vol. 18 (2003), p. 85-93
[2] Q.Zhou, M Robson, P.Pilesjo: International Journal of Remote Sensing Vol.9(1998), p.1815-1820
Zhou: Resources Science Vol. 26 (2004), p. 153-159.
Online since: June 2014
Authors: Duan Bo Cai, Hong Wei Wang, Li Kun Yang, Hai Ming Xu, Amena Hasan, Ye Dong Guo, Qiu Liang Li
College of Life Science, Hebei University, Baoding, P.R.
South China Institute of Environmental Sciences, MEP, Guangzhou, P.R .China 3.Guangzhou Institute of Geochemistry,CAS , Guangzhou, P.R .China 4.
Research Center for Eco-Environmental Sciences,CAS,Beijing, P.R.
Materials and Methods 2.1.
The Israeli Journal of Aquaculture – Bamidgeh, 61(4):322-329
South China Institute of Environmental Sciences, MEP, Guangzhou, P.R .China 3.Guangzhou Institute of Geochemistry,CAS , Guangzhou, P.R .China 4.
Research Center for Eco-Environmental Sciences,CAS,Beijing, P.R.
Materials and Methods 2.1.
The Israeli Journal of Aquaculture – Bamidgeh, 61(4):322-329
Online since: August 2011
Authors: Mu Hua Liu, Long Xue, Jing Li, Chun Sheng Luo, Xiao Wang
Materials and Methods
Navel orange samples.
Acknowledgement This work was supported in part by the National Natural Science Foundation of China (No. 30760101) ,Jiangxi Provincial Department of Science and Technology (No. 2009BNB05705) and Jiangxi Provincial Department of Education (No.GGJ08513).
Food Science Vol. 70 (2005), p. 471-476
Park: International Journal of Poultry Science Vol. 5 (2006), p. 964-969.
Acknowledgement This work was supported in part by the National Natural Science Foundation of China (No. 30760101) ,Jiangxi Provincial Department of Science and Technology (No. 2009BNB05705) and Jiangxi Provincial Department of Education (No.GGJ08513).
Food Science Vol. 70 (2005), p. 471-476
Park: International Journal of Poultry Science Vol. 5 (2006), p. 964-969.
Online since: March 2012
Authors: Tai Long Gui, Ji Ying Wen, Jin Shuo Mei
Preparation and character measurements of ZrO2 films for RF Magnetron Sputtering
Tailong Gui1,a, Jiying Wen1,b and Jinshuo Mei1,c
1College of Applied Sciences, Harbin University of Science and Technology, Harbin 15008,China
a guitl1952@yahoo.com.cn, b wjy3226268@163.com, c meijinshuo@yahoo.com.cn
Keywords: RF magnetron sputtering, zirconium oxide film, transmission rate
Abstract.
Before deposition,the glass substrate is cleaned 5min by KQ-50 ultrasonic cleaner,respectively, using acetone,ethanol,and deionized water,and then dry on the DZF-6020 vacuum.ZrO2 thin films were deposited by OLED multi-center multi-coated manufactured by Shenyang scientific instruments developed center of the Chinese academy.Sputtering target material is zirconium dioxide target material (a diameter of 100mm, thickness of 4mm and the purity was 99.9%).
Acknowledgement It is a project supported by natural science funds of Heilongjiang province (E200809).
Mohan: Journal of Vacuum Science and Technology A Vol. 6 (1992), p. 3451-3455
Before deposition,the glass substrate is cleaned 5min by KQ-50 ultrasonic cleaner,respectively, using acetone,ethanol,and deionized water,and then dry on the DZF-6020 vacuum.ZrO2 thin films were deposited by OLED multi-center multi-coated manufactured by Shenyang scientific instruments developed center of the Chinese academy.Sputtering target material is zirconium dioxide target material (a diameter of 100mm, thickness of 4mm and the purity was 99.9%).
Acknowledgement It is a project supported by natural science funds of Heilongjiang province (E200809).
Mohan: Journal of Vacuum Science and Technology A Vol. 6 (1992), p. 3451-3455
Online since: October 2011
Authors: Guang Ming Wu, Guang Jian Xing, Zhi Qian Zhang, Yan Ying Zhu, Yang Cao, Yang Zhou
Cadmium chloride and thiourea were used as raw materials to synthesize precursor solution, and CdS thin films were prepared on glass substrates by the home-made spray pyrolysis thin-film preparation device.Affects of preparation parameters, for example, the substrate temperature and fog particle velocity on the structure of CdS thin films were emphatically studied in the paper.
The CdS film as the window material of CdTe/CdS solar cells is also one of the focuses in the field.
References [1] Wu X, Keane J C, Dhere R G et al: 2001Proceedings of 17th European Photovoltaic Solar Energy Conference(Munich:WIP) p995 [2] Cunningham D, Davies K, Grammond L et al: 2000Proceedings of 28th IEEE Photovoltaic Specialist Conference(Anchorage: IEEE) p13 [3] Fthenakis VM, Kim H C: 2006European Material Research Society Meeting, Symposium O(Nice:EUMRS) p125 [4] Cunningham D, Rubcich M, Skinner D: 2002 Prog Photovolt Res.Appl.10159 [5] Bonnet D: 2000 Thin Solid Films361-362 547 [6] Rose D, Powell R, Jayamaha U et al: 2002Proceedings of29thIEEE Photovoltaic Specialist Conference(New Orleans: IEEE) p555 [7] Suyama N,AritaT,Nishiyama Y et al: 1990 OptoelectrDev.Tech.5259 [8] Zhang Junsong, Ma Juan, Cao Zhijian et al: 2005 Journal of Nanjing Normal University (Natural Science) 28 p64
The CdS film as the window material of CdTe/CdS solar cells is also one of the focuses in the field.
References [1] Wu X, Keane J C, Dhere R G et al: 2001Proceedings of 17th European Photovoltaic Solar Energy Conference(Munich:WIP) p995 [2] Cunningham D, Davies K, Grammond L et al: 2000Proceedings of 28th IEEE Photovoltaic Specialist Conference(Anchorage: IEEE) p13 [3] Fthenakis VM, Kim H C: 2006European Material Research Society Meeting, Symposium O(Nice:EUMRS) p125 [4] Cunningham D, Rubcich M, Skinner D: 2002 Prog Photovolt Res.Appl.10159 [5] Bonnet D: 2000 Thin Solid Films361-362 547 [6] Rose D, Powell R, Jayamaha U et al: 2002Proceedings of29thIEEE Photovoltaic Specialist Conference(New Orleans: IEEE) p555 [7] Suyama N,AritaT,Nishiyama Y et al: 1990 OptoelectrDev.Tech.5259 [8] Zhang Junsong, Ma Juan, Cao Zhijian et al: 2005 Journal of Nanjing Normal University (Natural Science) 28 p64
Online since: June 2006
Authors: N. Al-Jufairi
The method also enables
materials to be mixed at a molecular level making the solution as a colloidal gel with a high level of
fine porosity.
A great deal of research has been carried out on inorganic photovoltaic and photoconductive materials; there is a strong industrial interest regarding materials suitable for the fabrication of optoelectronic devices such as solar cells.
Many researchers have been exploring new semiconductor materials, like metal oxide, compound semiconductor materials [4-5].
[21] Jiang Hnngbo and Gao Lian., Materials Chemistry and Physics 9489 (2002),p.1 [22] Mardare Diana and Rusu, G.
I., Materials Science and Engineering B75 (2000),p.68 [23] Takahashi M, Mita K, Toyoki H, J.
A great deal of research has been carried out on inorganic photovoltaic and photoconductive materials; there is a strong industrial interest regarding materials suitable for the fabrication of optoelectronic devices such as solar cells.
Many researchers have been exploring new semiconductor materials, like metal oxide, compound semiconductor materials [4-5].
[21] Jiang Hnngbo and Gao Lian., Materials Chemistry and Physics 9489 (2002),p.1 [22] Mardare Diana and Rusu, G.
I., Materials Science and Engineering B75 (2000),p.68 [23] Takahashi M, Mita K, Toyoki H, J.
Online since: April 2009
Authors: M.E. Contreras-García, M.I. Espitia-Cabrera, H.D. Orozco-Hernández, M.A. Espinosa-Medina, L. Martínez
Zirconia and alumina films are biocompatible materials used in human prostheses [9].
Ralph: Journal of Materials Science Letters.
Martínez: Materials Letters Vol. 58 (2003), p. 191
Spinelli: Materials Letters.
Rajeswari: Materials Letters.
Ralph: Journal of Materials Science Letters.
Martínez: Materials Letters Vol. 58 (2003), p. 191
Spinelli: Materials Letters.
Rajeswari: Materials Letters.