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首页> 外文期刊>Progress in Solid State Chemistry >Recent developments in ceramic multiferroic composites based on core/shell and other heterostructures obtained by sol—gel routes
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Recent developments in ceramic multiferroic composites based on core/shell and other heterostructures obtained by sol—gel routes

机译:基于溶胶/凝胶路径获得的核/壳及其他异质结构的陶瓷多铁复合材料的最新进展

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摘要

In this review, the most relevant works in the field of multiferroic composites obtained by sol—gel methods will be presented. After a brief introduction to the topic of magnetoelectric multiferroics and the main characteristics and advantages of composites over single phase materials, several case-studies will be presented and compared, organized according to different geometries: particles embedded in a matrix, thin/thick films and other vertical heterostructures, with particular emphasis on core-shell structures. The aim of this review is to present the state-of-the-art in the field of core—shell composite obtained by sol-gel and other innovative methods, compared to traditional solid state approach. The possibility of varying several process parameters can be useful to adjust the final properties of the composites, but it can also make difficult to reproduce the same experimental conditions; in fact, sometimes contradictory results, even for similar compositions, were reported. In conclusion, a general agreement about the key parameters to be reported to characterize a multiferroic material is missing, and particular efforts have to be made to improve the dielectric properties of sintered composites.
机译:在这篇综述中,将介绍通过溶胶-凝胶法获得的多铁性复合材料领域中最相关的工作。在简要介绍了磁电多铁磁学以及复合材料相对于单相材料的主要特性和优势之后,将根据不同的几何形状,对几种案例研究进行比较和组织,包括:嵌入基质中的颗粒,薄膜/厚膜和其他垂直异质结构,尤其是核壳结构。这篇综述的目的是介绍与传统的固态方法相比,通过溶胶-凝胶法和其他创新方法获得的核-壳复合材料领域的最新技术。改变几个工艺参数的可能性对于调整复合材料的最终性能很有用,但也可能使复制相同的实验条件变得困难。实际上,有时甚至对相似的成分也有矛盾的结果。总而言之,关于要表征多铁性材料的关键参数缺少一般性的共识,必须做出特殊的努力来改善烧结复合材料的介电性能。

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