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Online since: March 2017
Authors: Dan Zhou, Li Na Wang, Ya Xiang Bai, You Yu, Zhong Qi Luan, Bing Qu, De Long Tang, Na Zhu, Zhao Hui Gao, Ai Ling Zou, Li Zhong Hu, Chao Pan
Ag dopant can adjust the properties of ZnO materials.
Materials Research Bulletin 82 (2016) 130–135
Journal of Colloid and Interface Science 479 (2016) 127–138 [8] Y.H.
Gong et.al, Large scale synthesis of hexagonal simonkolleit nanosheets for ZnO gas sensors with enhanced performances.Materials Letters 186 (2017) 7–11
Microelectronics Journal 40 (2009) 286–288 [10] E.
Online since: February 2024
Authors: Sunday Lukeman Lawal, Tien Chien Jen, Sunday Adeniran Afolalu, Esther Titilayo Akinlabi
Journal of Materials Research and Technology
Journal of Materials Research and Technology, 19, 3100-3109
Journal of Magnetism and Magnetic Materials, 558, 169524
International Journal of Lightweight Materials and Manufacture
Materials Science and Engineering: A, 856, 143931
Online since: May 2005
Authors: G. van der Heyd, Wolfgang Hussnätter, Manfred Geiger, Marion Merklein
Ishikawa: International Journal of Plasticity Vol. 14 (1998), p. 301-318 [5] E.
De Maré: Journal of Materials Processing Technology Vol. 80-81 (1998), p. 545-550 [6] M.C.
Comsa: Journal of Materials Processing Technology Vol. 125-126 (2002), p. 281-286 [7] D.
Pöhlandt: UTF science Vol. 4 (2001), p. 19-27 [13] M.
Chakraborty: Materials and Design Vol. 24 (2003), p. 471-481 [15] H.
Online since: January 2023
Authors: Bin Tang, Mo Ke Zhou, Shu Ren Zhang
Jantunen, Microwave materials and applications, John Wiley & Sons2017
Kang, Microwave dielectric properties of Nd:YAG transparent ceramics, Journal of Materials Science: Materials in Electronics, 27 (2016) 9767-9771
Yu, Crystal structure, sintering behavior and microwave dielectric properties of CaxY3−xAl5−xTixO12 (0≤ x≤ 2.0) solid solution ceramics, Journal of Materials Science: Materials in Electronics, 29 (2018) 17047-17053
Hsu, Influence of Nb2O5 additive on the densification and microstructural evolution of fine alumina powders, Materials Science and Engineering: A, 399 (2005) 232-237
Chiang, Grain growth in donor-doped SrTiO3, Journal of Materials Research, 5 (1990) 1237-1245
Online since: February 2011
Authors: Yan Lai Zhang, Zhong Hao Rao, Shuang Feng Wang, Jie Fei Xie
Heat storage experiment by natural convection in rectangular tanks heated from below has been conducted with fluidity slurry composed of microencapsulated phase change material (PCM).
International Journal of Heat and Mass Transfer, Vol.47 (2004), pp.2841-2847
[5] Zhengguo Zhang, Xiaoming Fang: Study on paraffin/expanded graphite composite phase change thermal energy storage material.
[11] Goel M., Sengupta S. and Roy S.K.: The Performance of Liquid Heat Sink with Phase Change material Suspensions, Int.
Horibe A.: Numerical Simulation of Rayleigh-Benard Convection with non-Newtonian Phase-Change-Material slurries, International J. of Thermal Sciences, Vol.42(2003), pp.471-480.
Online since: July 2011
Authors: Xi Yan Zhang, Li Qun Cheng, Guang Cheng, Rui Dong
Preparation and up-conversion luminescence of Yb3+and Er3+ co-doped BaF2 phosphor Liqun Cheng1, a, Guang Cheng2,b, Rui Dong 3,cand Xiyan Zhang4,d 1School of Photo-electronic Engineering, Changchun University of Science and Technology,Changchun,China,130022 2School of Foreign Languages, Changchun University of Science and Technology,Changchun,China,130022 3School of Materials Science and Engineering, Changchun University of Science and Technology,Changchun,China,130022 4School of Materials Science and Engineering, Changchun University of Science and Technology,Changchun,China,130022 achengliqun2011@126.com, bchengguang2010
The up-conversion emission properties can be significantly improved for the Yb3+ and Er3+ co-doped up-conversion materials because of the large absorption cross-section of Yb3+ to 980nm coupled with an efficient energy transfer between Yb3+ and Er3+.However it is still a arduous task to improve the up-conversion efficiency of the up-conversion materials[10~11].
Experimental Yb2O3(99.99%, Er2O3(99.99% ), BaF2(99.0%,) were used as the starting materials.YbF3 and ErF3 were prepared firstly in the laboratory by using HNO3(99.0%) and HF(99.0%).Na2SiF6(99.0%) was added as the charge compensation agents and flux.
The raw materials were weighted in stoichiometric ratios.
Cui, Journal of Solid State Chemistry, 179(3): p.955 (2006) [9] D.Q.
Online since: July 2011
Authors: Bambang Sunendar Purwasasmita, Haji Aripin, L. Agusu, L. Lestari, N. Jumsiah, I. Rahmatia, L. Nurdiwijayanto, I.N. Sudiana, S. Mitsudo, S. Sabchevski
They are usually present in the composition of different ceramic raw materials.
It should also be noted that this work deals not only with the chemical inertisation process and combination of waste materials but also with a new application of these waste materials as raw materials for production of highly-porous clay ceramics.
Sabchevski, “Sago waste based activated carbon film for electrode material of electric double layer capacitor (EDLC)”, The Open Materials Science Journal, vol. 4, pp. 117 – 124, 2010
Idehara, “Fabrication of Unglazed Clay Ceramic Tile using Sago Waste as a Prospective Additive Material with Controllable Milling”, submitting to The Open Materials Science Journal
Idehara, “Fabrication of unglazed ceramic tile using dense structured sago waste and clay composite”, Indonesian Journal of Material Science, vol. 11, no. 2, pp. 79 -82, 2010
Online since: June 2008
Authors: Krzysztof Jan Kurzydlowski, Małgorzata Lewandowska, Kinga Wawer
Kurzydlowski1,c 1 Warsaw University of Technology Faculty of Materials Science and Engineering, Woloska 141, 02-507 Warsaw, Poland a kingac@inmat.pw.edu.pl, bmalew@inmat.pw.edu.pl, ckjk@inmat.pw.edu.pl Keywords: hydrostatic extrusion, nanostructured materials, second phase particles, grain refinement, mechanical properties.
Materials and Methods The materials used in this study were Al-9%Si and Al-11%Si cast aluminium alloys.
References [1] Basavakumar K.G., Mukunda P.G., Chakraborty M.: Materials Characterisation 59 (2008) 283- 289 [2] Basavakumar K.G., Mukunda P.G., Chakraborty M.: International Journal of Impact Engineering 35 (2008) 199-205 [3] Garcia-Infanta J.M., Zhilyaev A.P., Cepeda-Jimenez C.M., Ruano O.A., Careno F.: Scripta Materialia 58 (2008) 138-141 [4] Ma Z.Y., Sharma S.R., Mishra R.S.: Scripta Materialia 54 (2006) 1623 [5] Venkateswarlu K., Das G., Pramanik A.K., Xu Ch., Langdon T.G.: Materials Science and Engineering A 427 (2006) 188-194 [6] Garcia-Infanta J.M., Swaminathan S., Zhilyaev A.P., Careno F., Ruano O.A., McNelley T.R.: Materials Science and Engineering A xxx(2007) xxx-xxx, article in press [7] Lewandowska M.: Solid State Phenomena 114 (2006) p. 109 [8] Lewandowska M., Pachla W., Kurzydłowski K.J.: Int.
Res. 98 (2007) p. 172-177 [9] Garbacz H., Lewandowska M., Pachla W., Kurzydłowski K.J.: Journal of Microscopy 223 (2006) p. 272-274 [10] Lewandowska M., Wawer K.: Materials Science Forum vol. 561-565 (2007) p. 869-872 [11] Wawer K., Lewandowska M., Kurzydlowski K.J.: Material Engineering 3-4 (2007), 486-490 [12] Lewandowska M., Pachla W., Kurzydłowsi K.J.: Int.
Res. 98 (2007) p. 172-177 [13] Wang G., Sun Q., Feng L., Hui L., Jing C.: Materials and Design 28 (2007) p. 1001-105 [14] Hung X., Hansen N., Tsuji N.: Science vol. 312 (2006) p. 249-251
Online since: May 2013
Authors: Cheng Hsin Yeh, Ming Feng Li, Horng Huei Wu
Two substrate materials are Sapphire substrate and Silicon substrate.
(5) The materials of all arriving orders are issued first come first in but limited by 2000K grains per day
(6) The materials are successively issued until 100 days and this experiment ends when all orders are completed
Uzsoy: European Journal of Operational Research Vol.161 (2005), p.86
Ke: Intational Journal of Production Research, Vol. 41 (2003), p.1765
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)
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