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New Fluoride-based Magnetoelectrics

New Fluoride-based Magnetoelectrics
新型氟化物磁电材料
批准号:
EP/F055722/1
负责人:
Philip Lightfoot
金额:
$41.74万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2008
资助国家:
英国
项目状态:
已结题
起止时间:
2008 至 --

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中文摘要
翻译
磁电材料是一类同时具有磁有序和电有序性质的特殊固态材料。目前,许多信息存储技术都是基于磁或电的有序和可切换的。如果一种材料同时具有这两种性质,那么原则上应该可以有利地利用这一点,例如,通过以电子方式存储数据,但以磁性方式读取数据。因此,最近全世界对这种磁电材料的兴趣重新抬头,这在很大程度上是由材料科学和物理界推动的。尽管这导致了对现存材料的相当基本的了解,但也表明严重缺乏正在发现和开发的新材料。这一“发现”方面是固态化学家的领域,在这个项目中,我们的目标是从固态化学的角度解决这个问题。我们将探索新的混合金属氟化物材料作为潜在的磁电材料,我们的研究建立在对这类化合物的结构和组成化学的良好理解的基础上。我们将用各种结晶学和物理方法来表征我们的新化合物。磁和电)技术,以确定这些材料的关键结构-性能-组成关系。最终,我们的目标是提供一系列具有磁电效应的新材料,材料科学和物理界将能够在此基础上开展更多的应用和开发工作。
英文摘要
Magnetoelectrics are a special class of solid-state material which simultaneously possess both magnetic and electrical ordering properties. Currently, many information storage technologies are based on either magnetic or electrical ordering and switchability. If a materials possesses both these properties then, in principle, it should be possible to exploit this advantageously, for example by storing data electrically, but reading it magnetically. There has therefore been a recent resurgence of interest worldwide in such magnetoelectric materials, driven largely by the materials science and physics communities. Although this has led to considerable fundamental understanding of exisiting materials it has also flagged up a serious lack of new materials being discovered and developed. This 'discovery' aspect is the realm of the solid state chemist, and in this project we aim to address this problem from a solid state chemistry perspective. We shall explore new mixed metal fluoride materials as potential magnetoelectrics, basing our search on a sound understanding of the structural and compositional chemistry of this family of compounds. We shall characterise our new compounds using a variety of crystallographic and physical (ie. magnetic and electrical) techniques in order to pin down the key structure-property-composition relations of these materials. Ultimately, we aim to provide a range of new materials exhibiting magnetoelectric effects, on which the materials science and physics communities will be able to base more applied and developmental work.
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Enhancing Performance in Polyanionic Cathode Materials
  • 批准号:
    EP/R030472/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $55.79万
  • 财政年份:
    2018
  • 负责人:
    Philip Lightfoot
  • 依托单位:
海外基金