M.V. Sambasiva Rao
Acharya Nagarjuna University
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Featured researches published by M.V. Sambasiva Rao.
Phase Transitions | 2018
M.V. Sambasiva Rao; A. Suneel Kumar; G. Chinna Ram; Ch. Tirupataiah; D. Krishna Rao
ABSTRACT Multi-component glass ceramics composition Na2O−PbO−Bi2O3−SiO2 doped with different concentrations of Fe2O3 as nucleating agent were characterised by XRD, SEM (scanning electron microscope) and DTA (differential thermal analysis) techniques. Optical absorption, EPR, FTIR and Raman studies are also carried out on these glass ceramics. Absorption bands observed at about 457, 489, 678 and 820 nm are the characteristics of Fe3+ ions whereas the band observed at about 964 nm is due to Fe2+ ions. EPR studies suggested that Fe3+ ions entered in the lattice as tetragonally distorted octahedral symmetry or rhombic sites at low concentration of Fe2O3, whereas at higher concentration of Fe2O3 (beyond 1 mol%), the super exchange type of interactions between multivalency iron ions begin to dominate. FTIR and Raman spectra have revealed the behaviour of various structural units in the glass ceramic matrix. The analysis of these spectroscopic studies indicates that iron ions do exist in Fe3+ and Fe2+ state.
Archive | 2018
M.V. Sambasiva Rao; Ch. Tirupataiah; A. Suneel Kumar; T. Narendrudu; S. Suresh; G. Chinna Ram; D. Krishna Rao
Glass ceramics with composition 10Na2O− 30PbO−10Bi2O3−(50-x)SiO2: xV2O5 (0 ≤ x ≤ 5) were synthesized by melt quenching and heat treatment method. XRD and SEM studies have indicated that the samples contain well defined and randomly distributed grains of different crystalline phases. Optical absorption spectra of these samples exhibited two absorption bands at 629 and 835 nm which are the characteristics of V4+ ions. The EPR spectra of these samples have exhibited well resolved hyperfine structure consisting of sixteen-eight parallel and eight perpendicular lines with a raise in their intensity with an increase in the content of V2O5 up to 3 mol% indicates the increase of redox ratio V4+/V5+ in the glass ceramic matrix.Glass ceramics with composition 10Na2O− 30PbO−10Bi2O3−(50-x)SiO2: xV2O5 (0 ≤ x ≤ 5) were synthesized by melt quenching and heat treatment method. XRD and SEM studies have indicated that the samples contain well defined and randomly distributed grains of different crystalline phases. Optical absorption spectra of these samples exhibited two absorption bands at 629 and 835 nm which are the characteristics of V4+ ions. The EPR spectra of these samples have exhibited well resolved hyperfine structure consisting of sixteen-eight parallel and eight perpendicular lines with a raise in their intensity with an increase in the content of V2O5 up to 3 mol% indicates the increase of redox ratio V4+/V5+ in the glass ceramic matrix.
Journal of Non-crystalline Solids | 2016
A. Suneel Kumar; T. Narendrudu; S. Suresh; M.V. Sambasiva Rao; G. Chinna Ram; D. Krishna Rao
Optical Materials | 2015
M.V. Sambasiva Rao; Ch. Rajyasree; T. Narendrudu; S. Suresh; A. Suneel Kumar; N. Veeraiah; D. Krishna Rao
Journal of Alloys and Compounds | 2017
A. Suneel Kumar; T. Narendrudu; S. Suresh; M.V. Sambasiva Rao; G. Chinna Ram; D. Krishna Rao
Journal of Molecular Structure | 2015
T. Narendrudu; S. Suresh; S. Yusub; A. Suneel Kumar; Ch. Rajyasree; M.V. Sambasiva Rao; V. Ravi Kumar; D. Krishna Rao
Optical Materials | 2017
G. Chinna Ram; T. Narendrudu; S. Suresh; A. Suneel Kumar; M.V. Sambasiva Rao; V. Ravi Kumar; D. Krishna Rao
Journal of Non-crystalline Solids | 2016
T. Narendrudu; S. Suresh; A. Suneel Kumar; M.V. Sambasiva Rao; P. Srinivasa Rao; D. Krishna Rao
Optical Materials | 2016
S. Suresh; T. Narendrudu; A. Suneel Kumar; M.V. Sambasiva Rao; G. Chinna Ram; D. Krishna Rao
Journal of Molecular Structure | 2016
M.V. Sambasiva Rao; S. Suresh; T. Narendrudu; A. Suneel Kumar; G. Chinna Ram; D. Krishna Rao