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Online since: March 2012
Authors: Shu Jing Jiao, Li Shan Cui, Jie Li, Da Qiang Jiang
These remarkable properties offer quasicrystals the potential materials for surface application.
Quasicrystals and quasicrystalline coating materials are hoping to be widely used in aerospace materials, solar energy materials, insulation materials and so on[8].
Materials Science and Engineering, 294–296 (2000) 834–837
Materials Science and Engineering, A255(1998)54-65
Journal of Non-Crystalline Solids, 278(2000)194-204.
Online since: October 2012
Authors: Yong Ping Zhao, Cong Chun Zhang, Gui Fu Ding, Yong Liang Wang
Research and Characterization of an Absorber Layer Material ---Cu(In,Ga)Se2 Sputtered on Polyimide Substrate in Material Engineering Yongping Zhao1, a, Congchun Zhang1,b, Guifu Ding1,c and Yongliang Wang1,d 1 National Key Laboratory of Science and Technology on Micro/Nano Fabrication Technology, Research Institute of Micro/Nano Science and Technology, Shanghai Jiao Tong University, 200240,Shanghai, China azyp2010sjtu@hotmail.com,bzhcc@sjtu.edu.cn(corresponding author), cgfding@sjtu.edu.cn, dwyl5617005@163.com Keywords: polyimide; Cu(In,Ga)Se2; solar cell; electric resistivity.
Cu(In,Ga)Se2 is a very important type of absorber layer material for high efficiency solar cells in material engineering.
In all the deposition method, such as co-evaporation, selenization, co-sputtering, electro chemical deposition and screen printing method, co-evaporation and selenization method can get the better quality of CIGS thin film among them, but when the CIGS film growth temperature is blow 400 ℃, the three-stage is inefficient for solar cells[8].RF magnetron sputtering is a commonly used method for the preparation of thin film materials, it is simple and easy to manipulate.
[6] Ju-Heon Yoon,Kwan-Hee Yoon,Won Mok Kim,Jong-Keuk Park,Young-Joon,Young-Joon Baik,Tae-Yeon Seong and Jeung-hyun Jeong JOURNAL OF PHYSICSD:APPLIED PHSICS;2011,10 [7] D.
[10] U Rau, M Schmidt, A Jasenek, G Hanna, HW Schock, Electrical characterization of Cu(In, Ga)Se2 thin- film solar cells and the role of defects for the device performance[J], Solar Energy Materials & Solar Cells, 2001, 67: 137~143
Online since: April 2014
This is of great relevance to the society and science, in particular for economic endeavors.
Yarub Al-Douri, International Journal of Nanoelectronics and Materials, Editor-in-Chief http://ijneam.unimap.edu.my/ World Journal of Nano Science and Engineering, Editor-in-Chief http://www.scirp.org/journal/wjnse/ Committees and sponsors: It's available at http://bond21.unimap.edu.my/ The Editor: Assoc.
Online since: August 2010
Authors: Yu Li Lin, W.Z. Peng, Cheng Yi Hsu
Hydrous ruthenium oxides were found to be a superior material for the electrode of supercapacitor, which can offer higher capacity of electric charge than any other materials.
Liao, Industrial Materials 178 , 100-106 (2001). 3.
Zheng, Industrial Materials, Vol. 182, 120-128 (2002). 4.
Menocal, Journal of Power Sources 113, 62-71 (2003). 6.
Zhou, Materials Chemistry and Physics 98, 442-446 (2006). 7.
Online since: November 2015
Authors: G. Shanmugasundar, R. Sivaramakrishnan
In general the hazardous wastes are heated to dryness and finally leaving as of fine powder form as combined with crushed glass in a furnace to produce molten materials to integrate the waste.
The properties of the selected materials were modelled with data available in the stress analysis ANSYS 12.0 package material property library.
References [1] Amit Kumar Mondal and Kamal Bansal, (2015),“ Structural analysis of solar panel cleaning robotic arm”, Journal of CURRENT SCIENCE, VOL. 108, NO. 6, pp 1047- 1052
Sivaramakrishnan, (2012), Modelling, Design and Static Analysis of Seven Degree of Freedom Articulated Inspection Robot “, Applied Materials Research, Vol. 655-657, pp 1053-1056
Manjunath, (2007),” Kinematic Modelling and Maneuvering of A 5-Axes Articulated Robot Arm “, World Academy of Science, Engineering and Technology International Journal of Mechanical, Aerospace, Industrial and Mechatronics Engineering Vol:1, No:4, pp 216- 222
Online since: May 2025
Authors: Nicholas Malatji, Lehlogonolo Rudolf Kanyane, Abimbola Patricia I. Popoola
Methodology Materials.
Materials Chemistry and Physics, 2019. 230: p. 122-130
Materials Science and Engineering: A, 2019. 744: p. 46-53
Advanced Engineering Materials, 2021: p. 2100156
International Journal of Lightweight Materials and Manufacture, 2022. 5(2): p. 153-161
Online since: August 2018
Authors: Yuan Hua Lin, Li Na Qiao, Ming Rui Tang, Yong Yun Gang, M.H. Xu
Xu1 and Yuan-Hua Lin1,b* 1State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, P.R.China 2The Experimental High School Attached to Beijing Normal University, Beijing 100032, P.R.
[2] Zhao, Y.; Burda, C., Development of plasmonic semiconductor nanomaterials with copper chalcogenides for a future with sustainable energy materials.
Energy & Environmental Science. 5 (2) (2012) 5564-5576
Nature materials. 12 (6) (2013) 512-517
Applied Surface Science. 257 (20) (2011) 8732-8736
Online since: September 2016
Authors: Pavel Hutař, Luboš Náhlík, Kateřina Štegnerová, Zdeněk Majer, Martin Pletz, Raul Bermejo
Introduction Nowadays, the composite materials can be found in almost all engineering applications.
A considerable part consists of materials based on ceramics.
Nahlik, Mechanics of Composites Materials Vol. 49 (2013), p. 475
Woodhams: Journal of Applied Polymer Science Vol. 18 (1974), p. 1639
Knesl, Key Engineering Materials Vol. 592-593 (2014), p. 445
Online since: April 2012
Authors: Xiao Zhen Liu, Gang Wang, Ling Ling Song, Jun Hua Yang, Ge Shi Zhuang
These include nanopores [5], nanowires [6], nanotubes [7], and nanodots [8], which are all functional materials for solar energy conversion, catalysis, sensors and separation filters.
Rare earth compounds have been widely used in optics, electronics, metallurgy, chemical and materials engineering, due to their special physical and chemical characteristics [9].
Huang: Journal of Rare Earths Vol.27 (2009), p.480 [10] X.Y.
Yu, et al.: Advanced Materials Research Vol. 415-417 (2012), p.1895  [12] X.Z.
Yu, et al.: Advanced Materials Research Vol. 399-401 (2012), p.847
Online since: August 2016
Authors: E.S.L. Vasconcelos, Edkarlla Sousa Dantas de Oliveira, M.A.G.A. Lima, M. Montoya, Severino Leopoldino Urtiga Filho, Cezar Henrique Gonzalez
Filho1,f. 1Federal University of Pernambuco – Laboratory of composite materials.
Materials and methods Cultivation of SRB.
Welding Journal, 3. pp. 71-5, 83-5
Taylor et al: Jornal of Materials Science: Materials in Medicine Vol. 9 (1998), p. 17
Thesis of Master of applied science.