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Zalak Joshi

Researcher at Saurashtra University

Publications -  31
Citations -  443

Zalak Joshi is an academic researcher from Saurashtra University. The author has contributed to research in topics: Dielectric & Thin film. The author has an hindex of 11, co-authored 30 publications receiving 366 citations.

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Structure and microstructure dependent transport and magnetic properties of sol–gel grown nanostructured La 0.6 Nd 0.1 Sr 0.3 MnO 3 manganites: Role of oxygen

TL;DR: In this paper, the structural and micro-structural properties of sol-gel grown nanostructured La0.6Nd0.1Sr0.3MnO3 (LNSMO) manganites sintered and annealed at different temperatures (viz., 700, 800 and 900 °C).
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Transport properties and electroresistance of a manganite based heterostructure: role of the manganite–manganite interface

TL;DR: The electric field dependent electroresistance (ER) behavior of the presently studied LMO/LCMO manganite-manganite interface, grown using wet and dry chemical methods, has been understood on the basis of complex mechanisms including charge injection, formation of the depletion region, the tunneling effect, thermal processes and junction breakdown and their dependence on the applied electric field, field polarity and temperature studied.
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Low field magnetoelectric studies on sol–gel grown nanostructured YMnO3 manganites

TL;DR: In this paper, single phasic nanostructured YMnO3 manganites were successfully synthesized by employing acetate precursor based modified sol-gel technique followed by their sintering at different temperatures.
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Charge transport mechanisms in sol-gel grown La0.7Pb0.3MnO3/LaAlO3 manganite films.

TL;DR: To understand the nature of charge transport for the low temperature resistivity behavior and metallic and insulating (semiconducting) regions, various models and mechanisms have been verified and the most suitable mechanism has been found for each region in the resistivity curves.
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Size-controlled electrical properties of sol–gel-grown nanostructured Gd0.95Ca0.05MnO3

TL;DR: In this article, the results of the studies on electrical properties of cost-effective modified sol-gel-grown nanostructured Gd0.95Ca0.05MnO3 (GCMO) manganites sintered at different temperatures are reported.