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Online since: February 2021
Authors: Mohamed Bououdina, Assia Azizi, D. Houanoh, R. Tala-Ighil, F. Bensouici, K. Chebout, S. Lamrani, Mahdia Toubane
Ufuktepe, Structural and optical properties of zinc oxide thin films prepared by spray pyrolysis method, Journal of optoelectronics and advanced materials, 8 (2006) 299
Sadollahkhani, Influence of pH on the photocatalytic activity of ZnO nanoparticles, Journal of Materials Science: Materials in Electronics, 27 (2016) 4206-4215
Shibata, Low-temperature crystallization of oriented ZnO film using seed layers prepared by sol–gel method, Journal of materials science, 46 (2011) 3537-3543
Hassan, Structural and optical characteristics of porous GaN generated by electroless chemical etching, Materials Letters, 63 (2009) 724-727
Boudrioua, Doping effect investigation of Li-doped nanostructured ZnO thin films prepared by sol–gel process, Journal of Materials Science: Materials in Electronics, 27 (2016) 8040-8046
Online since: April 2011
Authors: Volker Schulze, Rüdiger Pabst, Florian Ambrosy, Frederik Zanger, Jürgen Michna
Cutting edge radii of 1μm or below are achievable for carbide materials as reported in [5, 6].
Kapoor: Journal of Manufacturing Science and Engineering Vol. 120 (1998), p. 693 [3] T.H.C.
Yamane: CIRP Journal of Manufacturing Science and Technology Vol. 1 (2008), p.70 [4] A.J.
Childs: CIRP Journal of Manufacturing Science and Technology Vol. 3 (2010), p.27 [9] K.
Segal: Journal of Materials Processing Technology Vol. 210 (2010), p.2154 [12]S.M.
Online since: March 2016
Authors: Saad S. Hajer, Azmi Zakaria, M.N. Azlan, M.K. Halimah
The raw materials powder of Sm2O3, TeO2, ZnO and B2O3 were weighed by using digital weighing machine with accuracy of ±0.0001g.
Zaidan, “Optical properties of ternary tellurite glasses,” Materials Science- Poland, vol. 28, no. 1, pp. 173-180, 2010
Culea, “The local structure of gadolinium vanado-tellurite glasses,” Journal of Materials Science, vol. 43, pp. 3713-3716, 2008
Hamzah, “Effect of natural Fe3O4 nanoparticles on structural and optical properties of Er3+ doped telluriteglass,” Journal of Magnetism and Magnetic Materials, vol. 326, pp.123–128, 2013
Journal of materials letters, vol. 85, pp. 21-24.2012
Online since: June 2022
Authors: Dianisa Khoirum Sandi, Fahru Nurosyid, Yofentina Iriani, Rindhi Afriani
Among numerous photocatalytic materials, the metal oxide of perovskite-type offers themselves as one of the remarkable photocatalytic materials.
The perovskite materials possess diverse and interesting properties, such as the oxygen content in the materials, that lead to high catalytic activity and can be easily doped with metals in the preferred amount [2, 3].
Of these materials, Strontium titanate (STO) is well recognized as a promising photocatalytic material [1, 3].
Materials and Methods Materials.
Xu, New insights into sensitization mechanism of the Doped Ce (IV) into strontium Titanate, Materials. 11 (2018) 646
Online since: June 2017
Authors: M.B.A. Asmael, Rosli Ahmad, Ashraf M.M. Elaswad, Nurul Raihan Shahizan
Journal of Achievements in Materials and Manufacturing Engineering, 2007. 20(92007): p. 127-130
Materials Science and Engineering: A, 2015. 644: p. 247-253
Journal of Achievements in Materials and Manufacturing Engineering, 2007. 22(1): p. 29-32
Materials Science and Engineering: A, 2008. 480(1-2): p. 529-539
Materials Science and Engineering: A, 2007. 443(1): p. 248-256
Online since: May 2013
Authors: Jun Ping Meng, Xiao Li Huo, Jie Liu, Yan Fen Pan
Influence of Tourmaline Mineral Material on Structure and Physical and Chemical Properties of Water Jun-ping Meng *, Xiao-li Huo, Jie Liu, Yan-fen Pan (Institute of Power Source and Ecomaterials Science, Heibei University of Technology, tianjin 300130, China) *mengjunping@hebut.edu.cn Key words: Tourmaline, Water molecule, Far-infrared rays, Hydrogen bond, Surface tension Abstract.
Tourmaline, a natural polar mineral material, was applied as the far-infrared radiation source.
Mizuno et al.: Japanese Journal of Applied Physics, 2004, 43(4) p.545-547
Liang, et al.: China Environmental Science. 2002, 22(6) p.515-519(In Chinese)
Zhang et al.: Journal of Polymer Science, 2004(42) p.367-373
Online since: September 2020
Authors: Abdellah Tahiri, Brahim Boubeker, Mohamed Idiri
The addition a small concentration of Re to W increased the strong and plastic deformation of materials W alloy.
Elastic properties are fundamental properties of solid materials.
Applied Physics A: Materials Science & Processing, vol. 77, no. 1, June 2003, pp. 159–61
“Research and Application of Rare Earth Tungsten Electrode Materials.” 
Materials Science Forum, vol. 847, Mar. 2016, pp. 65–71
Online since: May 2021
Authors: Ahli K.D. Willie, Hong Tao Zhao, M. Annor-Nyarko
Zinkle, Materials Challenges for Advanced Nuclear Energy Systems.
Was, Fundamentals of Radiation Materials Science (Springer, Heidelberg, 2007)
Journal of Nuclear Materials. 321 https://doi.org/10.1016/j.jnucmat.2007.01.081
Journal of Nuclear Materials. 299 https://doi.org/10.1016/j.jnucmat.2014.08.009
Journal of Nuclear Materials. https://doi.org/10.1016/j.jnucmat.2009.10.043
Online since: December 2014
Authors: Jun Chen, Xing Yuan Zhang, Quan An Li, Qing Zhang
Materials Science and Engineering A, Vol. 302 (2001), p. 37 [2] A.A.
Materials Science Forum, Vol. 419-422 (2003), p. 57 [3] Z.H.
Frontier Materials Science of China, Vol. 2 (2008), p. 1 [4] D.
Journal of Materials Science, Vol. 43 (2008), p. 6952 [6] M.
Materials Science and Engineering A, Vol. 319-321 (2001), p. 751 [7] M.
Online since: September 2023
Authors: Carpoforo Vallellano, Fernando Mas, Guzman Domínguez-Domínguez
· Class 1: the depth of the scratch is less than 20 µm (for bare materials), or the cladding layer has not been trespassed
For clad materials, the base alloy exposed after scratch removal shall be less than 5% of the total area of the part to be considered as class 2
Materials Science and Engineering: 527 (2009) 297–304
Materials Science and Engineering: A 2009, 500, 16–24, doi:10.1016/j.msea.2008.09.039
Effect of Scratches on the Fatigue Behaviour of an Al-Li alloy, Fatigue & Fracture of Engineering Materials & Structures. 17 (1994) 501–507
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