Optical and Physical Properties of Cu-Co Doped in Soda Lime Silicate Glasses

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Abstract:

Co/Cr co-doped in soda lime silicate (SLS) glasses were prepared by using normal melt quenching technique. The current composition was prepared based on the proposed ratio: (64.9-x)SiO2: 10CaO: 25Na2O: 0.1CuO: xCoO where x=0.00, 0.01, 0.02, 0.03, 0.04 and 0.05 mol% were prepared at 1200°C for 3 h, and annealed at 500 °C for 3 h. The physical and optical properties of Co/Cr co-doped in SLS glasses were investigated such as density, molar volume, refractive index and optical absorption were discussed and measured. The optical absorption spectrum of Co/Cr co-doped in SLS glasses measured at room temperature in the wavelength region 200–1100 nm were presented.

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143-148

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January 2017

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© 2017 Trans Tech Publications Ltd. All Rights Reserved

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[1] Terczyn´ M. A., Kowalska K.C., Czka M.L. Optical Materials, 2011; 33: 1984–(1988).

Google Scholar

[2] Volk Yu.V.,. Malyarevich A. M, Yumashev K.V., Alekseeva I. P., Dymshits O. S., Shashkin A. V., Zhilin A. A. Journal of Non-Crystalline Solids, 2007; 353: 2408–2414.

DOI: 10.1016/j.jnoncrysol.2007.04.018

Google Scholar

[3] Alekseeva I., Dymshits O., Tsenter M., Zhilin A., Golubkov V., Denisov I., Skoptsov N., Malyarevich A., Yumashev K. Journal of Non-Crystalline Solids, 2010; 356: 3042–3058.

DOI: 10.1016/j.jnoncrysol.2010.05.103

Google Scholar

[4] Paul G., Klein Lisa C. Journal of Non-Crystalline Solids, 1984; 68: 75.

Google Scholar

[5] Gaafar M.S., Marzouk S.Y., Zayed H.A., Soliman L.I., Serag El-Deen A.H. Current Applied Physics, 2013; 13: 152-158.

DOI: 10.1016/j.cap.2012.07.007

Google Scholar

[6] Oo H. M., Halimah M. K. and Yusoff W. M. D. W. Solid State Science and Technology, 2012; 20: 62-67.

Google Scholar

[7] Kumari G.K., Begum Sk. M., Krishna Ch. R., Sathish D.V., Murthy P.N., Rao P.S., Ravikumar R.V.S.S.N. Materials Research Bulletin, 2012; 47: 2646–2654.

DOI: 10.1016/j.materresbull.2012.04.075

Google Scholar

[8] Rao A.S., Ahammed Y.N., Reddy R.R., Rao T.V.R. Optical Materials, 1998; 10: 245–252.

Google Scholar

[9] Dimitrov V., Komatsu T. Journal of Non-Cryst. Solids. 1999; 249: 160–179.

Google Scholar

[10] Zhao X., Wang X., Lin H., Wang Z. Physica B. 2007; 392: 132-136.

Google Scholar

[11] Rajyasree Ch., Bala Murali Krishna S., Ramesh Babu A., Krishna Rao D. Journal of Molecular Structure, 2013; 1033: 200–207.

DOI: 10.1016/j.molstruc.2012.08.040

Google Scholar

[12] Chen L., Yu C., Hu L., Chen W. Journal of Non-Crystalline Solids, 2013; 360: 4–8.

Google Scholar

[13] Yu C., Feng S., Chen L., He D., Wang M., Zhang L., Zhang J., Hu L. Journal of Non-Crystalline Solids, 2011; 357: 2309–2311.

Google Scholar

[14] Chen L., Yu C., Hu L., Chen W. Journal of Non-Crystalline Solids, 2013; 357: 3486–3489.

Google Scholar

[15] Vinaya Teja P.M., Rajyasree Ch., Srinivasa Rao P., Ramesh Babu A., Tirupataiah Ch., Krishna Rao D. Journal of Molecular Structure, 2012; 1014: 119–125.

DOI: 10.1016/j.molstruc.2012.01.040

Google Scholar