Optical Basicity and Polarizability of Nd<sup>3+</sup>-Doped Bismuth Borate Glasses
- 1 Ceramics Laboratory, Department of Physics, Jai Narain Vyas University, Jodhpur, India
- 2 Ceramics Laboratory, Department of Physics, Jai Narain Vyas University, Jodhpur, India
- 3 Ceramics Laboratory, Department of Physics, Jai Narain Vyas University, Jodhpur, India
- 4 Ceramics Laboratory, Department of Physics, Jai Narain Vyas University, Jodhpur, India
Abstract
This paper reports on different physical and optical properties of Nd3+-doped bismuth borate glasses. The glasses containing Nd 3+ in (25 - x)Bi 2 O 3 :20Li 2 O:20ZnO: 3 5B 2 O 3 :xNd 2 O 3 (where x = 1, 1.5, 2 mol%) have been prepared by melt-quenching method. The amorphous nature of the glasses was confirmed by X-ray diffraction studies. The physical parameters like dielectric constant, refractive index, ionic concentration, oxygen-packing density, inter ionic distance, polaronradius, reflection loss, energy gap, molar refractivity, molar polarizability, electronic polarizability, optical basicity and field strength are computed. On the basis of the measured values of the density and refractive index, the Nd 3+ ion concentration in glasses, the polarizability of oxide ions and optical basicity were theoretically determined. The theoretical value of average electronic polarizability and oxide ion polarizability were calculated by using Lorentz-Lorenz formula. Theoretical optical basicity of the glasses is evaluated based on equation proposed by Duffy and Ingram. The metallization criterion has also been calculated on the basis of refractive index and energy gap. The large value of metallization criterion indicates that the glass materials are insulators. The results obtained predict the nature of bonding in the present glasses and provide basis for developing new nonlinear optical material.
- Zhou, S., Jiang, N., Zhu, B., Yang, H., Ye, S., Laksminarayana, G., Hao, J. and Qiu, J. (2008) Multifunctional Bismuth-Doped Nanoporous Silica Glass: From Blue-Green, Orange, Red, and White Light Sources to Ultra-Broadband Infrared Amplifiers. Advanced Functional Materials, 181, 407-1413.
- Meng, X., Qiu, J., Pen, M., Chen, D., Zhao, Q., Jiang, X. and Zhu, C. (2005) Near Infrared Broadband Emission of Bismuth-Doped Aluminophosphate Glass. Optics Express, 13, 1628-1634. http://dx.doi.org/10.1364/OPEX.13.001628
- Wang, Y., Dai, S., Chen, F., Xu, T. and Nie, Q. (2009) Physical Properties and Optical Band Gap of New Tellurite Glasses within the TeO2-Nb2O5-Bi2O3 System. Materials Chemistry and Physics, 113, 407-411. http://dx.doi.org/10.1016/j.matchemphys.2008.07.117
- Opera, I., Hesse, H. and Betzler, K. (2004) Optical Properties of Bismuth Borate Glasses. Optical Materials, 26, 235- 237. http://dx.doi.org/10.1016/j.optmat.2003.10.006
- Zhao, X., Wang, X., Lin, H. and Wang, Z. (2007) Correlation among Electronic Polarizability, Optical Basicity and Interaction Parameter of Bi2O3-B2O3 Glasses. Physica B, 390, 293-300. http://dx.doi.org/10.1016/j.physb.2006.08.047
- Khor, S.F., Talib, Z.A., Sidek, H.A.A., Daud, W.M. and Ng, B.H. (2009) Effects of ZnO on Dielectric Properties and Electrical Conductivity of Ternary Zinc Magnesium Phosphate Glasses. American Journal of Applied Sciences, 6, 1010-1014. http://dx.doi.org/10.3844/ajassp.2009.1010.1014
- Varshneya, A.K. (1994) Fundamentals of Inorganic Glasses. Academic Press, Boston, 570.
- Dimitrov, V. and Komatsu, T. (2005) Classification of Oxide Glasses: A Polarizability Approach. Journal of Solid State Chemistry, 178, 831-846. http://dx.doi.org/10.1016/j.jssc.2004.12.013
- Mohana, S., Thind, K.S., Sharma, G. and Gerward, L. (2008) Spectroscopic Investigations of Nd3+-Doped Flouro- and Chloro-Borate Glasses. Spectrochimica Acta Part A, 70, 1173-1179. http://dx.doi.org/10.1016/j.saa.2007.10.038
- Moorthy, L.R., Rao, T.S., Jayasimhadri, M., Radhapathy, A. and Murthy, D.V.R. (2004) Spectroscopic Investigation of Nd3+-Doped Alkali Chloroborophosphate Glasses. Spectrochimica Acta Part A, 60, 2449-2458. http://dx.doi.org/10.1016/j.saa.2003.12.022
- Ohishi, Y., Mitachi, S., Kanamori, T. and Manabe, T. (1983) Optical Absorption of 3d Transition Metal and Rare Earth Elements in Zirconium Fluoride Glasses. Physics and Chemistry of Glasses, 24, 135-140.