G. Sahaya Baskaran
Andhra Loyola College
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Featured researches published by G. Sahaya Baskaran.
Materials Science and Engineering: C | 2015
G. Jagan Mohini; G. Sahaya Baskaran; V. Ravi Kumar; M. Piasecki; N. Veeraiah
Soda lime silica borate glasses mixed with different concentrations of TiO2 are synthesized by the melt-quenching technique. As a part of study on bioactivity of these glasses, the samples were immersed in simulated body fluid (SBF) solution for prolonged times (~21 days) during which weight loss along with pH measurements is carried out at specific intervals of time. The XRD and SEM analyses of post-immersed samples confirm the formation of crystalline hydroxyapatite layer (HA) on the surface of the samples. To assess the role of TiO2 on the formation of HA layer and degradability of the samples the spectroscopic studies viz. optical absorption and IR spectral studies on post- and pre-immersed samples have been carried out. The analysis of the results of degradability together with spectroscopic studies as a function of TiO2 concentration indicated that about 6.0 mol% of TiO2 is the optimal concentration for achieving better bioactivity of these glasses. The presence of the maximal concentration octahedral titanium ions in this glass that facilitates the formation of HA layer is found to be the reason for such a higher bioactivity.
Materials Science and Engineering: C | 2015
G. Jagan Mohini; G. Sahaya Baskaran; V. Ravi Kumar; M. Piasecki; N. Veeraiah
Soda lime silica borate glasses mixed with different concentrations of TiO2 are synthesized by the melt-quenching technique. As a part of study on bioactivity of these glasses, the samples were immersed in simulated body fluid (SBF) solution for prolonged times (~21 days) during which weight loss along with pH measurements is carried out at specific intervals of time. The XRD and SEM analyses of post-immersed samples confirm the formation of crystalline hydroxyapatite layer (HA) on the surface of the samples. To assess the role of TiO2 on the formation of HA layer and degradability of the samples the spectroscopic studies viz. optical absorption and IR spectral studies on post- and pre-immersed samples have been carried out. The analysis of the results of degradability together with spectroscopic studies as a function of TiO2 concentration indicated that about 6.0 mol% of TiO2 is the optimal concentration for achieving better bioactivity of these glasses. The presence of the maximal concentration octahedral titanium ions in this glass that facilitates the formation of HA layer is found to be the reason for such a higher bioactivity.
Transactions of The Indian Ceramic Society | 2013
A. V. Sri Pallavi; G. Sahaya Baskaran; G. Little Flower; D. Rajeswara Rao; N. Veeraiah
The glasses of the composition 30PbO-65B2O3-0.5SiO2-(4.5–x)Al2O3-xSm2O3 with x varying from 0 to 2 mol% have been synthesized. Optical absorption and photoluminescence spectra in the spectral range 300-2200 nm and 450-700 nm, respectively, were studied at ambient temperature. The Judd-Ofelt theory was applied to characterize these spectra. The analysis of the results indicated that the glasses containing maximum concentration of Al3+ ions in octahedral positions is preferable for achieving the highest luminescence efficiency.
Applied Surface Science | 2013
G. Jagan Mohini; N. Krishnamacharyulu; G. Sahaya Baskaran; P. Venkateswara Rao; N. Veeraiah
Journal of Molecular Structure | 2012
M. Sundara Rao; Ch. Srinivasa Rao; B.V. Raghavaiah; G. Sahaya Baskaran; V. Ravikumar; I.V. Kityk; N. Veeraiah
Journal of Alloys and Compounds | 2017
P. Sobhanachalam; Ch. Vijaya Kumari; G. Sahaya Baskaran; P. Syam Prasad; N. Veeraiah; V. Ravi Kumar
Journal of Non-crystalline Solids | 2016
N. Krishnamacharyulu; G. Jagan Mohini; G. Sahaya Baskaran; V. Ravi Kumar; N. Veeraiah
Journal of Non-crystalline Solids | 2013
D. Rajeswara Rao; G. Sahaya Baskaran; V. Ravi Kumar; N. Veeraiah
Journal of Molecular Structure | 2014
D. Rajeswara Rao; G. Sahaya Baskaran; P. Ramesh Babu; Y. Gandhi; N. Veeraiah
Physica B-condensed Matter | 2011
N. Srinivasa Rao; P. Raghava Rao; Y. Gandhi; Ch. Srinivasa Rao; G. Sahaya Baskaran; V. Ravi Kumar; N. Veeraiah