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The book describes the preparation of calcium phosphate glasses doped with different concentrations of V2O5. The influence of valence states of vanadium ions with respect to the structural aspects by means of FTIR and Raman Spectra, elastic properties by means of relevant parameters, the thermal stability by means of DTA studies, and other spectroscopic properties by using Optical Absorption, Bio and ESR studies are studied. In addition to this, he is a peer reviewer of the Journal of Non-Crystalline Solids, Journal of Luminescence, Journal of Materials Science and Materials in Electronics,…mehr

Produktbeschreibung
The book describes the preparation of calcium phosphate glasses doped with different concentrations of V2O5. The influence of valence states of vanadium ions with respect to the structural aspects by means of FTIR and Raman Spectra, elastic properties by means of relevant parameters, the thermal stability by means of DTA studies, and other spectroscopic properties by using Optical Absorption, Bio and ESR studies are studied. In addition to this, he is a peer reviewer of the Journal of Non-Crystalline Solids, Journal of Luminescence, Journal of Materials Science and Materials in Electronics, Silicon and Applied Composite Materials. He is an active editorial board member of many peer-reviewed journals, such as the Journal of Radiation Oncology and Research, the Journal of Polymer Chemistry and Materials, the Journal of Environmental Toxicology, the Journal of Scientific Research, and the International Journal of Advanced Research and Science. In addition to this, he has published many peer-reviewed research articles and textbooks with Nature, Elsevier, and Springer publishers.
Autorenporträt
Dr. RK Guntu has over 16 years of teaching and research experience. He has been honored with many national and international awards for his academic and research excellence. Dr. G Anil Kumar has been an active researcher in the field of thin films and bio-glasses. He published many research articles under his UGC Project.