首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >The role of 2D/3D spin-polarization interactions in hybrid copper hydroxide acetate: new insights from first-principles molecular dynamics
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The role of 2D/3D spin-polarization interactions in hybrid copper hydroxide acetate: new insights from first-principles molecular dynamics

机译:2D / 3D自旋极化相互作用在混合醋酸氢铜中的作用:来自第一性原理的分子动力学的新见解

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摘要

The magnetic properties response of the layered hybrid material copper hydroxide acetate Cu2(OH)3CH3COO·H2O is studied as a function of the applied pressure within first-principles molecular dynamics. We are able to elucidate the interplay between the structural properties of this material and its magnetic character, both at the local (atomic) level and at the bulk level. We performed a detailed analysis of the intralayer spin configurations occurring for each value of the imposed projection along the z-axis for the total spin and of the applied pressure. The transition from an antiferromagnetic to a ferromagnetic state at high pressure (above 3 GPa) goes along with a vanishing difference between the spin polarizations pertaining to each layer. Therefore, at high pressure, copper hydroxide acetate is a ferromagnet with no changes of spin polarization in the direction perpendicular to the inorganic layers.
机译:研究了层状杂化材料氢氧化铜醋酸盐Cu2(OH)3CH3COO·H2O的磁性能响应与第一原理分子动力学内施加压力的关系。我们能够阐明这种材料的结构特性与其磁特性在局部(原子)水平和体积水平上的相互作用。我们对层内自旋构型进行了详细分析,该层内自旋构型是针对总自旋和施加压力沿z轴施加的每个投影值所发生的。在高压(高于3 GPa)下从反铁磁状态到铁磁状态的过渡伴随着属于每一层的自旋极化之间消失的差异。因此,在高压下,乙酸氢氧化铜是在垂直于无机层的方向上自旋极化没有变化的铁磁体。

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