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Fe57 Mössbauer Spectroscopy Study
Details
Multiferroic is a novel multifunctional material and possesses magneticspin, electric dipole and ferroelastic ordering. Ferroelectricity and magnetism exists in same phase and have spurred the interest of scientist due to potentialapplications in memory storage, transducers, spintronics, magnetic sensor and ferromagneticresonance devices BiFeO3 (BFO) is a smart ceramic material which possesses multiferroic properties. It shows ferroelectricity with high Curie temperature (TC = 830 °C) and G-type antiferromagnetic order below Néel temperature, TN = 370 °C with a long-range cycloidal spin arrangement of wavelength 62 nm incommensurate with the lattice. Although these properties are favorable for device making, the applications of BFO have been limited due to several inherent drawbacks such as formation of secondary phase during synthesis, weak magnetic characteristics, weak magnetoelectric coupling, high leakage current etc. Lately, researchers have devised new methods to improve the properties of the material and one such method is to substitute one of the sites of BFO by some other element.
Autorentext
My name is Dr. Atul Kumar Sinha, s/o Shri Awinash Kumar Sinha. I have completed PhD in Physics from KIIT university Bhubaneshwar, India in 2020, M.Tech in Nanoscience and Nanotechnology from BIT Mesra, Ranchi, India in 2014 and B.Tech in Electronics and Instrumentation Engineering from BITM Santiniketan, West Bengal, India in 2010.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786203026177
- Genre Elektrotechnik
- Sprache Englisch
- Anzahl Seiten 88
- Größe H220mm x B150mm x T6mm
- Jahr 2020
- EAN 9786203026177
- Format Kartonierter Einband (Kt)
- ISBN 6203026174
- Veröffentlichung 26.11.2020
- Titel Fe57 Mössbauer Spectroscopy Study
- Autor Atul Kumar Sinha
- Untertitel of Transition Metal Doped Bismuth FerriteMultiferroic Nanoparticles
- Gewicht 149g
- Herausgeber LAP LAMBERT Academic Publishing