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Discovering connections between terahertz vibrations and elasticity underpinning the collective dynamics of the HKUST-1 metal-organic framework

机译:发现太赫兹振动和弹性之间的联系,支撑了HKUST-1金属有机框架的集体动力学

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We employed a combination of theoretical and experimental techniques to study the metal-organic framework (MOF)-mechanics central to the paddle-wheel Cu-3(BTC)(2) porous structure, commonly designated as HKUST-1. Lattice dynamics of the hybrid framework at below 18 THz were measured by means of Raman and synchrotron far-infrared spectroscopy, and systematically correlated to collective vibrational modes computed from ab initio density functional theory (DFT). We have identified a number of intriguing lowenergy framework vibration mechanisms, reminiscent of the 'trampoline-like' deformations and new oscillatory motions associated with Cu paddle-wheel 'molecular rotors'. The three independent single-crystal elastic constants of the HKUST-1 (i.e. C-11, C-12 and C-44) were calculated using the DFT approach, taking into account the effects of dispersion corrections. We established the full elasticity solutions accompanying detailed deformation mechanisms that control its anisotropic mechanical properties, ranging from the Young's and shear moduli to linear compressibility and Poisson's ratio. Our results support the notion that the co-existance of soft modes and intrinsic shear distortions connected to the THz lattice dynamics dictate a range of anomalous elastic phenomena, for example: negative Poisson's ratio (auxeticity), negative thermal expansion (NTE), and exceedingly low shear moduli properties.
机译:我们采用理论和实验技术的结合来研究桨叶式Cu-3(BTC)(2)多孔结构(通常称为HKUST-1)中心的金属-有机骨架(MOF)-力学。利用拉曼光谱仪和同步加速器远红外光谱仪测量了低于18 THz的混合框架的晶格动力学,并将其与从头算密度函数理论(DFT)计算得出的集体振动模式进行了系统关联。我们已经发现了许多有趣的低能耗框架振动机制,让人联想到“蹦床式”变形以及与Cu桨轮“分子转子”相关的新的振动运动。考虑到色散校正的影响,使用DFT方法计算了HKUST-1的三个独立的单晶弹性常数(即C-11,C-12和C-44)。我们建立了完整的弹性解,并伴随着详细的变形机制来控制其各向异性的机械性能,从杨氏模量和剪切模量到线性压缩率和泊松比。我们的结果支持以下观点:软模式和固有的剪切变形的共存与太赫兹晶格动力学相关,从而决定了一系列异常的弹性现象,例如:负泊松比(膨胀性),负热膨胀(NTE)以及过大的弹性。低剪切模量。

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