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Preparation condition, composition and post-preparation thermal treatment assisted control of structural and magnetic properties of spinel nano ferrites

机译:制备条件,组成和后制剂热处理辅助控制尖晶石纳米铁氧体的结构和磁性

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Study of ferrites has always been a topic of immense significance from the point of view of their magnetic applications, including their usage in high frequency devices, microwave devices, bioscience. For the same, there is a need to understand magnetic properties, and their correlation with structural properties, to be able to have a suitable material for a specific application. This article reviews various spinel ferrite systems in the framework of a specific synthesis protocol (with variable synthesis parameters, including microwave assisted green synthesis etc.), a precise composition (with possibilities for its modification), and usage of post-preparation thermal treatment (e. g. - conventional furnace annealing, microwave sintering, park plasma sintering, ion irradiation etc.). Complimentary information on structural (by x-ray diffraction 'XRD'); magnetic (by vibration sample magnetometer 'VSM') properties as well are described. Representative examples of ferrite nano particles are also given, depicting the effect of composition, synthesis protocol, and post-preparation treatment (including an overview of various spinel nanoparticles in tabular form), showing modification of structural, magnetic properties, correlation between them is illustrated.
机译:铁氧体研究始终是从磁性应用的角度来看的巨大意义,包括它们在高频设备,微波器件,生物科学中的使用。同样地,需要了解磁性特性,以及它们与结构性质的相关性,以能够具有特定应用的合适材料。本文通过特定合成方案(具有可变合成参数,包括微波辅助绿色合成等)的各种尖晶石铁氧体系统,精确的成分(具有其改性的可能性),以及制备后热处理的使用情况(例如 - 常规炉退火,微波烧结,公园等离子体烧结,离子照射等)。关于结构的互补信息(通过X射线衍射'XRD');磁性(通过振动样品磁力计的VSM'),描述了属性。还给出了铁氧体纳米颗粒的代表性实例,描绘了组合物,合成方案和后制剂后的作用(包括表格形式的各种尖晶石纳米颗粒的概述),显示出结构,磁性,它们之间的相关性的变性。

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