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A Material Showing Colossal Positive and Negative Volumetric Thermal Expansion with Hysteretic Magnetic Transition

机译:一种物质,显示巨大和负体积热膨胀与滞后磁过渡

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摘要

It is an ongoing challenge to design and synthesize magnetic materials that undergo colossal thermal expansion and that possess potential applications as microscale or nanoscale actuators with magnetic functionality. A paramagnetic metallocyanate building block was used to construct a cyanide-bridged Fe-Co complex featuring both positive and negative colossal volumetric thermal-expansion behavior. A detailed study revealed that metal-to-metal charge transfer between 180 and 240K induced a volumetric thermal expansion coefficient of 1498 MK-1 accompanied with hysteretic spin transition. Rotation of the magnetic building blocks induced change of pi center dot center dot center dot pi interactions, resulting in a negative volume expansion coefficient of -489 MK-1, and another hysteretic magnetic transition between 300 and 350 K. This work presents a strategy for incorporating both colossal positive and negative volumetric thermal expansion with shape and magnetic memory effects in a material.
机译:设计和合成经过巨大热膨胀的磁性材料并具有潜在应用作为微观尺寸或纳米级执行器具有磁性功能的持续挑战。使用顺磁性金属氰酸酯构建块来构建氰化桥桥的Fe-Co复合物,其具有正和负致残的体积热膨胀行为。详细研究表明,180和240K之间的金属到金属电荷转移诱导1498 mk-1的体积热膨胀系数,伴随滞后旋转过渡。磁性构建块的旋转诱导PI中心点中心点中心点PI相互作用的变化,导致负体积膨胀系数-489 mk-1,以及300和350 k之间的另一个滞后磁道转换。这项工作提出了一种策略将巨大的正和负体积热膨胀结合在一起,在材料中具有形状和磁记忆效果。

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