Ferroelctrics are technologically important materials, particularly for their applications in ferroelectric random access memory, based on semiconductor integrated technology have been a great success. Furthermore, these RAMS are very sensitive to radiation and this is detrimental for military and space applications. The properties of the layered perovskite ferroelectrics can be enhanced by addition or substitution of alternative cations. Among the important ferroelectric materials lead zirconate titanate (PZT), which is part of the solid solution formed between ferroelectric lead titanate and anti-ferroelectric lead zirconate with different compositions are used for different applications. Recent works indicate the influence of nanoparticles in PZT properties like decrease of synthesizing temperature, electrical conductivity and low dielectric loss. These materials will be the future ferroelectric materials for noval applications. The present paper Include a thorough study of these materials to finding out reasons for the improvement ferroelectric material properties in the nano scale and their optimization techniques for better applications.
Published in | American Journal of Nanoscience and Nanotechnology (Volume 2, Issue 3) |
DOI | 10.11648/j.nano.20140203.15 |
Page(s) | 56-62 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2014. Published by Science Publishing Group |
Ferroelectrics, Nanoparticles, Lead Zirconate Titanate, FeRAMS, SPM
[1] | Szafraniak,a) C. Harnagea,b) R. Scholz, S. Bhattacharyya,c) D. Hesse, and M. Alexe Ferroelectric epitaxial nanocrystals obtained by a self-patterning method APPLIED PHYSICS LETTERS VOLUME 83, NUMBER 11 15 SEPTEMBER 2003 2211-2213 |
[2] | Ionela Vrejoiu,a_ Marin Alexe, Dietrich Hesse, and Ulrich Gösele Ferroelectric nanostructures J. Vac. Sci. Technol. B 27„1 Jan/Feb 2009 pp. 498-503. |
[3] | A Gruverman and A Kholkin Nanoscale ferroelectrics: processing, characterization and future trends Rep. Prog. Phys. 69 (2006) 2443–2474 |
[4] | Xingqiang Liu , Yueli Liu , Wen Chen , Jinchai Li and Ferroelectric memory based on nanostructures Nanoscale Research Letters 2012, 7:285-290 |
[5] | Zhenkui Shen, Zhihui Chen, Qian Lu, Zhijun Qiu, Anquan Jiang, Xinping Qu, Yifang Chen and Ran Liu , Nano-embossing technology on ferroelectric thin film Pb(Zr0.3,Ti0.7)O3 for multi-bit storage application Nanoscale Research Letters 2011, 6:474-479, |
[6] | Zhaohui Ren, Gang Xu, Xiao Wei, Yong Liu, Ge Shen, and Gaorong HanwShape Evolution of Pb (Zr,Ti)O3 Nanocrystals Under Hydrothermal Conditions J. Am. Ceram. Soc., 90 [8] 2645–2648 (2007) |
[7] | Waser R (ed) 2005 Nanoelectronics and Information Technology: Advanced Electronic Materials and Novel Devices (Berlin: Wiley-VCH) |
[8] | Hong S 2003 Nanoscale Phenomena in Ferroelectric Thin Films (Dordrecht: Kluwer) |
[9] | Alexe M and Gruverman A 2004 Nanoscale Characterization of Ferroelectric: Scanning Probe Microscopy Approach (Berlin: Springer). |
APA Style
Kurapati Kurapati Srinivas. (2014). Influence of Nanoparticles in PZT Ferroelectric Material Properties and Their Applications to Memory Devices. American Journal of Nano Research and Applications, 2(3), 56-62. https://doi.org/10.11648/j.nano.20140203.15
ACS Style
Kurapati Kurapati Srinivas. Influence of Nanoparticles in PZT Ferroelectric Material Properties and Their Applications to Memory Devices. Am. J. Nano Res. Appl. 2014, 2(3), 56-62. doi: 10.11648/j.nano.20140203.15
AMA Style
Kurapati Kurapati Srinivas. Influence of Nanoparticles in PZT Ferroelectric Material Properties and Their Applications to Memory Devices. Am J Nano Res Appl. 2014;2(3):56-62. doi: 10.11648/j.nano.20140203.15
@article{10.11648/j.nano.20140203.15, author = {Kurapati Kurapati Srinivas}, title = {Influence of Nanoparticles in PZT Ferroelectric Material Properties and Their Applications to Memory Devices}, journal = {American Journal of Nano Research and Applications}, volume = {2}, number = {3}, pages = {56-62}, doi = {10.11648/j.nano.20140203.15}, url = {https://doi.org/10.11648/j.nano.20140203.15}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.nano.20140203.15}, abstract = {Ferroelctrics are technologically important materials, particularly for their applications in ferroelectric random access memory, based on semiconductor integrated technology have been a great success. Furthermore, these RAMS are very sensitive to radiation and this is detrimental for military and space applications. The properties of the layered perovskite ferroelectrics can be enhanced by addition or substitution of alternative cations. Among the important ferroelectric materials lead zirconate titanate (PZT), which is part of the solid solution formed between ferroelectric lead titanate and anti-ferroelectric lead zirconate with different compositions are used for different applications. Recent works indicate the influence of nanoparticles in PZT properties like decrease of synthesizing temperature, electrical conductivity and low dielectric loss. These materials will be the future ferroelectric materials for noval applications. The present paper Include a thorough study of these materials to finding out reasons for the improvement ferroelectric material properties in the nano scale and their optimization techniques for better applications.}, year = {2014} }
TY - JOUR T1 - Influence of Nanoparticles in PZT Ferroelectric Material Properties and Their Applications to Memory Devices AU - Kurapati Kurapati Srinivas Y1 - 2014/06/20 PY - 2014 N1 - https://doi.org/10.11648/j.nano.20140203.15 DO - 10.11648/j.nano.20140203.15 T2 - American Journal of Nano Research and Applications JF - American Journal of Nano Research and Applications JO - American Journal of Nano Research and Applications SP - 56 EP - 62 PB - Science Publishing Group SN - 2575-3738 UR - https://doi.org/10.11648/j.nano.20140203.15 AB - Ferroelctrics are technologically important materials, particularly for their applications in ferroelectric random access memory, based on semiconductor integrated technology have been a great success. Furthermore, these RAMS are very sensitive to radiation and this is detrimental for military and space applications. The properties of the layered perovskite ferroelectrics can be enhanced by addition or substitution of alternative cations. Among the important ferroelectric materials lead zirconate titanate (PZT), which is part of the solid solution formed between ferroelectric lead titanate and anti-ferroelectric lead zirconate with different compositions are used for different applications. Recent works indicate the influence of nanoparticles in PZT properties like decrease of synthesizing temperature, electrical conductivity and low dielectric loss. These materials will be the future ferroelectric materials for noval applications. The present paper Include a thorough study of these materials to finding out reasons for the improvement ferroelectric material properties in the nano scale and their optimization techniques for better applications. VL - 2 IS - 3 ER -