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Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion

Karamveer Kaur1 , Anand K. Tyagi2

Section:Research Paper, Product Type: Isroset-Journal
Vol.6 , Issue.5 , pp.15-20, Oct-2018


CrossRef-DOI:   https://doi.org/10.26438/ijsrpas/v6i5.1520


Online published on Oct 31, 2018


Copyright © Karamveer Kaur, Anand K. Tyagi . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
 

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IEEE Style Citation: Karamveer Kaur, Anand K. Tyagi, “Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion,” International Journal of Scientific Research in Physics and Applied Sciences, Vol.6, Issue.5, pp.15-20, 2018.

MLA Style Citation: Karamveer Kaur, Anand K. Tyagi "Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion." International Journal of Scientific Research in Physics and Applied Sciences 6.5 (2018): 15-20.

APA Style Citation: Karamveer Kaur, Anand K. Tyagi, (2018). Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion. International Journal of Scientific Research in Physics and Applied Sciences, 6(5), 15-20.

BibTex Style Citation:
@article{Kaur_2018,
author = {Karamveer Kaur, Anand K. Tyagi},
title = {Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion},
journal = {International Journal of Scientific Research in Physics and Applied Sciences},
issue_date = {10 2018},
volume = {6},
Issue = {5},
month = {10},
year = {2018},
issn = {2347-2693},
pages = {15-20},
url = {https://www.isroset.org/journal/IJSRPAS/full_paper_view.php?paper_id=891},
doi = {https://doi.org/10.26438/ijcse/v6i5.1520}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v6i5.1520}
UR - https://www.isroset.org/journal/IJSRPAS/full_paper_view.php?paper_id=891
TI - Thermoanalytical and XRD Investigations on Ba6Ti5O18 Ceramics Synthesized by Auto Combustion
T2 - International Journal of Scientific Research in Physics and Applied Sciences
AU - Karamveer Kaur, Anand K. Tyagi
PY - 2018
DA - 2018/10/31
PB - IJCSE, Indore, INDIA
SP - 15-20
IS - 5
VL - 6
SN - 2347-2693
ER -

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Abstract :
The cation deficient perovskite (Ba6Ti5O18) has been successfully synthesized using auto combustion technique. Thermal analysis of obtained powders is carried out to investigate the phase development and to optimize the preparation parameters. The evolution of the desired phase, its structure, lattice parameters and crystallite size variation as a function of calcinations/firing temperature have also been studied using XRD analysis.

Key-Words / Index Term :
A6B5O18 Cation Deficient Perovskite, Auto-Combustion, Crystallite Size, Thermoanatytical Investigations, XRD

References :
[1] T. Negas, G. Yeager, S. Bell and R. Amren, “Chemistry and Properties of Temperature Compensated Microwave Dielectrics”, NIST Special Publication 804, Chemistry of Electronic Ceramic Materials, Proceedings of the International Conference, pp.21-37, 1991.
[2] N. I. Santha and M. T. Sebastian, “Microwave Dielectric Properties of A6B5O18-Type Perovskites”, J. Am. Ceram. Soc., Vol.90, Issue. 2, pp.496–501, 2007.
[3] L. Fang, H. Zhang, L. Chen, R. Z. Yuan, R. Dronskowski, ”Preparation and Characterization of New Dielectric Ceramics Ba5LnTi2Nb3O18 (Ln = La, Nd)”,J. Mater. Sci., Vol. 16, Issue.1, pp.43-46, 2005.
[4] R. D. Purohit and A. K. Tyagi, “Synthesis of monophasic Ba2Ti9O20 through gel combustion”, Journal of Materials Chemistry, Vol.4, 2002.
[5] L. Zhang, B. Cui, R. Ma, L. Li, Y. Wang, W. Yan and Z. Chang, “High permittivity of Ba(Ti1-xZrx)O3 based Y5V type nano-powders and ceramics synthesized using a one step sol gel method”, Journal of Advanced Dielectrics, Vol.3,Issue.4, pp.1350018, 2013.
[6] A. Mergen, “Fabrication of dielectric Ba2Ti9O20 ceramic by a polymerized complex method”, Ceramics -Silikaty, Vol.53, Issue.4, pp.231-236, 2009.
[7] W. Li et al., “Structure and electrical properties of BaTiO3 prepared by sol gel process”, J. Alloys Compd., Vol. 482, pp.137, 2009.
[8] J. Ansaree and S. Upadhyay, “Thermal analysis of formation of nano-crystalline BaTiO3 using Ba(NO3)2 and TiO2”, Processing and Application of Ceramics, Vol.9, Issue.4, pp.181–185, 2015.
[9] W. Lin, R. A. Gerhardt, R. F. Speyer and J. Y. Hsu, “Thermal processing and properties of BaTi4O9 and Ba2Ti9O20 dielectric resonators”, journal of material science, Vol.34, pp.3021-3025, 1999.
[10] A. R. Drews, W. Wong-Ng, T. A. Vanderah, and R. S. Roth, ‘‘Preparation and Crystal Structure of Sr6TiNb4O18,’’ J. Alloys Comp., Vol.255, pp.243–7, 1997.
[11] B. D. Cullity, “Elements of X-Ray Diffraction”, Addison-Wesley, 2nd edition, 1978.

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