Influence of a-site substitution on structural, electrical resistivity and magnetic properties in La-based manganite system : a review / Nurul Natasha Mohammad Khairani

Mohammad Khairani, Nurul Natasha (2022) Influence of a-site substitution on structural, electrical resistivity and magnetic properties in La-based manganite system : a review / Nurul Natasha Mohammad Khairani. Degree thesis, Universiti Teknologi Mara Perlis.

Abstract

Perovskite manganite has received attention and been studied extensively for its based manganite has been discussed in this work. This paper provides an overview of current research on the fabrication, structural characterization, and physical properties of perovskite manganite at A-site substitution. Our review begins with a brief overview of the research history and significant findings in the La-based manganite system. In the next section, several methods for fabricating some samples that contain La-based are summarized. Furthermore, structural characterization and multifunctional properties of A-site substitution in La-based manganite system are discussed in detail. Then, the effect of A-site substitution on electrical resistivity and magnetic properties on manganite are reviewed. Finally, potential applications of A-site substitution in La-based manganite are highlighted in the sectors of magnetic sensor, magnetic refrigeration, and photonic devices.characteristics and application in technology nowadays. Thus, a throughout understanding of the influence of A-site substitution on electrical resistivity and magnetic properties in La-based manganite are highlighted in the sectors of magnetic sensor, magnetic refrigeration, and photonic devices.

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Item Type: Thesis (Degree)
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Mohammad Khairani, Nurul Natasha
UNSPECIFIED
Subjects: Q Science > QC Physics > Electricity and magnetism
Q Science > QD Chemistry > Physical and theoretical chemistry > Electrochemistry. Electrolysis
Divisions: Universiti Teknologi MARA, Perlis > Arau Campus > Faculty of Applied Sciences
Keywords: Manganite ; A-Site Substitution ; Fabrication Methods ; Structural Characterization ; Electrical ; Magnetic Properties
Date: 7 December 2022
URI: https://ir.uitm.edu.my/id/eprint/71278
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