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Design and Synthesis of a Library of Molecule-Based Magnets: The Charge-Transfer Salt Approach

机译:分子磁体磁体库的设计和合成:电荷转移盐法

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摘要

The rules governing magnetic coupling in molecule-based materials are still being defined. Until they are clear, synthetic efforts should ideally yield many new candidate magnets for a minimal investment of time and effort. One approach that satisfies this requirement is the synthesis of magnetic chargetransfer salts from metallocenes and easily identifiable organic acceptors. This strategy offers the possibility of synthesizing a library of structurally related compounds utilizing tunable building blocks and has yielded examples exhibiting interesting magnetic phenomena including ferromagnetism, metamagnetism, canted (weak) ferromagnetism, and spin glass behavior. In principle, this work should permit a systematic examination of structure-property relationships, leading to a better understanding of intermolecular magnetic coupling.
机译:仍在定义控制基于分子的材料中磁耦合的规则。除非明确说明,否则综合努力应该理想地生产出许多新的候选磁体,而所需的时间和精力却很少。满足该要求的一种方法是由茂金属和易于识别的有机受体合成电荷转移盐。这种策略提供了利用可调构件合成结构相关化合物库的可能性,并产生了展示出有趣的磁性现象的例子,包括铁磁性,超磁性,倾斜(弱)铁磁性和自旋玻璃行为。原则上,这项工作应允许系统检查结构-性质之间的关系,从而更好地理解分子间的磁耦合。

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