Center for Materials Crystallography, Dept. of Chemistry and iNANO, Aarhus University, 8000 Aarhus C, Denmark.
Dalton Trans. 2013 Feb 14;42(6):1996-2007. doi: 10.1039/c2dt31491f.
Complementary experimental techniques and ab initio calculations were used to determine the origin and nature of negative thermal expansion (NTE) in the archetype metal-organic framework MOF-5 (Zn(4)O(1,4-benzenedicarboxylate)(3)). The organic linker was probed by inelastic neutron scattering under vacuum and at a gas pressure of 175 bar to distinguish between the pressure and temperature responses of the framework motions, and the local structure of the metal centers was studied by X-ray absorption spectroscopy. Multi-temperature powder- and single-crystal X-ray and neutron diffraction was used to characterize the polymeric nature of the sample and to quantify NTE over the large temperature range 4-400 K. Ab initio calculations complement the experimental data with detailed information on vibrational motions in the framework and their correlations. A uniform and comprehensive picture of NTE in MOF-5 has been drawn, and we provide direct evidence that the main contributor to NTE is translational transverse motion of the aromatic ring, which can be dampened by applying a gas pressure to the sample. The linker motion is highly correlated rather than local in nature. The relative energies of different framework vibrations populated in MOF-5 are suggested by analysis of neutron diffraction data. We note that the lowest-energy motion is a librational motion of the aromatic ring which does not contribute to NTE. The libration is followed by transverse motion of the linker and the carboxylate group. These motions result in unit-cell contraction with increasing temperature.
采用互补的实验技术和从头算方法,确定了原型金属有机骨架 MOF-5(Zn(4)O(1,4-苯二甲酸酯)(3))中负热膨胀(NTE)的起源和本质。通过在真空和 175 巴气体压力下对有机配体进行非弹性中子散射,以区分骨架运动的压力和温度响应,通过 X 射线吸收光谱研究金属中心的局部结构。多温度粉末和单晶 X 射线和中子衍射用于表征样品的聚合性质,并在 4-400 K 的大温度范围内定量 NTE。从头算计算以详细的框架振动信息补充实验数据及其相关性。对 MOF-5 中的 NTE 进行了统一而全面的描述,并提供了直接证据表明,芳香环的平移横向运动是 NTE 的主要贡献者,可以通过对样品施加气体压力来抑制这种运动。配体运动高度相关,而不是局部的。通过对中子衍射数据的分析,提出了 MOF-5 中不同骨架振动占据的相对能量。我们注意到,最低能量的运动是芳香环的摆动运动,它不贡献 NTE。摆动运动之后是配体和羧酸盐基团的横向运动。这些运动导致单元胞随着温度的升高而收缩。