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Geometric switching of linear to area negative thermal expansion in uniaxial metal-organic frameworks

机译:单轴金属有机框架中线性到面积负热膨胀的几何转换

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摘要

Using variable-temperature neutron powder diffraction measurements, we show that the two quartz-like metal-organic frameworks (MOFs) deuterium indium(iii) terephthalate and zinc(ii) isonicotinate exhibit anisotropic positive and negative thermal expansion (PTE/NTE) behaviour. Whereas in the former the NTE response is uniaxial - occurring along the hexagonal crystal axis - this behaviour is inverted in the latter such that PTE occurs along the hexagonal axis and NTE is found in the entire plane of perpendicular directions. We show that this inversion of mechanical response can be explained on geometric grounds alone; specifically, we identify a critical framework geometry that demarcates a switch from linear to area NTE response. Extending this analysis to other common MOF topologies, we establish a generic predictive approach for establishing the dimensionality of NTE (or, by extension, negative compressibility) responses in a large range of different framework systems. Our analysis suggests that framework geometry plays a crucial role in determining the mechanical response of framework materials which show anisotropic responses via hinging. © 2014 the Partner Organisations.
机译:使用变温中子粉末衍射测量,我们显示了两种石英状金属有机骨架(MOFs)氘化铟铟(iii)和异烟酸锌(ii)表现出各向异性的正负热膨胀(PTE / NTE)行为。而在前者中,NTE响应是单轴的-沿着六边形晶体轴发生-在后者中,这种行为是相反的,因此PTE沿着六边形的晶体轴发生,并且在垂直方向的整个平面中都发现NTE。我们表明,这种机械响应的倒置可以仅凭几何理由来解释;具体来说,我们确定了一个关键的框架几何形状,该几何形状将从线性NTE响应转换为区域NTE响应。将此分析扩展到其他常见的MOF拓扑,我们建立了一种通用的预测方法,用于在各种不同的框架系统中确定NTE(或扩展为负可压缩性)响应的维数。我们的分析表明,构架几何形状在确定构架材料的机械响应中起着至关重要的作用,该构架材料通过铰链显示出各向异性响应。 ©2014合作伙伴组织。

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