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Thermal Analysis of Magnetic Hybrid Nanoalloys and Their Nanocomposites

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Handbook of Magnetic Hybrid Nanoalloys and their Nanocomposites

Abstract

Herein, a background study of the thermal behavior of magnetic nanoalloy and nanocomposites has been discussed elaborately. Hybrid magnetic nanoalloys and composites are magical components with assured magnetic, catalytic, and optical properties. The nanocomposites associated with such nanoalloys have fascinated its importance particularly in the domains of power electronics, semiconductor, material sciences, and biophysics. The measurement of the physical properties of such alloys and composites at the nanoscale has been performed concerning temperature function by using dynamic methods which include DTA, DSC, TGA, dynamic mechanical analysis (DMA), thermomechanical analysis (TMA), magnetic hyperthermia, lock-in thermography, and DC magnetometry. The thermal event of such nanoalloys and composites has instigated the change in their mass, shape, dimensions, and mechanical properties at different temperature parameters. This thermal dependency activity also affects the phase deviation, degradation behavior, thermal and oxidative stability, kinetics and lifetime of nanoalloy and composites, glass transition temperature, crystallinity, aging, coefficient of thermal expansion, stress relaxation, damping characteristics, brittleness, and anisotropy at the several temperatures ranges from room temperature to higher. Further, the application of such materials has been extensively used in different fields with appropriate case studies.

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Acknowledgments

The authors also acknowledge the research support grants awarded by UGC India for awarding DSK Kothari Post-Doctoral fellowship to Dr. Biswajit Parhi. “Dr. Dehasrita Bharatiya acknowledges Veer Surendra Sai University of Technology (VSSUT), Burla, India for the support in research facilities as a Research Associate (RA).”

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Correspondence to Sarat Kumar Swain .

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Bharatiya, D., Parhi, B., Swain, S.K. (2022). Thermal Analysis of Magnetic Hybrid Nanoalloys and Their Nanocomposites. In: Thomas, S., Rezazadeh Nochehdehi, A. (eds) Handbook of Magnetic Hybrid Nanoalloys and their Nanocomposites. Springer, Cham. https://doi.org/10.1007/978-3-030-90948-2_23

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