首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Towards novel multiferroic and magnetoelectric materials: Dipole stability in tetragonal tungsten bronzes
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Towards novel multiferroic and magnetoelectric materials: Dipole stability in tetragonal tungsten bronzes

机译:面向新型多铁和磁电材料:四方钨青铜的偶极稳定性

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摘要

We discuss the strategy for development of novel functional materials with the tetragonal tungsten bronze structure. From the starting composition Ba 6GaNb9O30, the effect of A- and B-site substitutions on the dielectric properties is used to develop an understanding of the origin and stability of the dipolar response in these compounds. Both tetragonal strain induced by large B-site cations and local strain variations created by isovalent A-site substitutions enhance dipole stability but result in a dilute, weakly correlated dipolar response and canonical relaxor behaviour. Decreasing cation size at the perovskite A2-site increases the dipolar displacements in the surrounding octahedra, but insufficiently to result in dipole ordering. Mechanisms introducing small A-site lanthanide cations and incorporation of A-site vacancies to induce ferroelectricity and magnetism are presented.
机译:我们讨论了开发具有方形钨青铜结构的新型功能材料的策略。从起始成分Ba 6GaNb9O30,A位和B位取代对介电性能的影响被用来加深对这些化合物中偶极响应的起源和稳定性的理解。由大的B位阳离子引起的四方应变和由等价的A位取代产生的局部应变变化均会增强偶极稳定性,但会导致稀释的,弱相关的偶极响应和规范的弛豫行为。钙钛矿A2-位的阳离子尺寸减小会增加周围八面体的偶极位移,但不足以导致偶极有序。介绍了引入小的A位镧系元素阳离子和引入A位空位以诱导铁电和磁性的机理。

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