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Maghemite-silica nanocomposites: sol-gel processing enhancement of the magneto-optical response

机译:磁赤铁矿-二氧化硅纳米复合材料:溶胶-凝胶处理增强了磁光响应

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摘要

The preparation and processing of maghemite-silica gel nanocomposites have been investigated in order to maximize their magneto-optical response for magnetic field sensing applications. In situ precipitation of maghemite nanoparticles from an iron salt precursor during the sol-gel processing of the silica matrix has been carried out while controlling the time, temperature, and environment at each step of the whole process. In this paper, the nanostructural, magnetic, and magneto-optical properties of these materials are correlated with the processing path followed, from the starting sol to the partially densified monolith. Results demonstrate that introducing a washing treatment prevents the formation of hematite phase as well as an excessive particle agglomeration. Different processing conditions of identical sols may lead to nanocomposites with a Verdet constant at low magnetic fields (0.01 T) ranging from 200 to 950 rad T-1 m(-1), which is the typical value of commercial terbium gallium garnets used in Faraday rotators.
机译:已经研究了磁赤铁矿-硅胶纳米复合材料的制备和加工过程,以使其在磁场传感应用中的磁光响应最大化。在控制整个过程的每个步骤的时间,温度和环境的同时,已经在二氧化硅基质的溶胶-凝胶加工过程中从铁盐前体原位沉淀了磁铁矿纳米颗粒。在本文中,这些材料的纳米结构,磁性和磁光性质与从起始溶胶到部分致密整料的后续加工路径相关。结果表明,引入洗涤处理可防止赤铁矿相的形成以及过度的颗粒团聚。相同溶胶的不同处理条件可能会导致纳米复合材料在200至950 rad T-1 m(-1)的低磁场(0.01 T)下具有Verdet常数,这是法拉第使用的商用gall镓石榴石的典型值旋转器。

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