Department of Chemistry, University of Oxford, Inorganic Chemistry Laboratory, South Parks Road, Oxford OX1 3QR, United Kingdom.
Department of Chemistry, University College London, Gower Street, London WC1E 6BT, United Kingdom.
Phys Rev Lett. 2018 Jun 29;120(26):265501. doi: 10.1103/PhysRevLett.120.265501.
We use a combination of x-ray diffraction, total scattering, and quantum mechanical calculations to determine the mechanism responsible for hydration-driven contraction in ZrW_{2}O_{8}. The inclusion of H_{2}O molecules within the ZrW_{2}O_{8} network drives the concerted formation of new W─O bonds to give one-dimensional (─W─O─){n} strings. The topology of the ZrW{2}O_{8} network is such that there is no unique choice for the string trajectories: the same local changes in coordination can propagate with a large number of different periodicities. Consequently, ZrW_{2}O_{8}·H_{2}O is heavily disordered, with each configuration of strings forming a dense aperiodic "spaghetti." This new connectivity contracts the unit cell via large shifts in the Zr and W atom positions. Fluctuations of the undistorted parent structure towards this spaghetti phase emerge as the key negative thermal expansion (NTE) phonon modes in ZrW_{2}O_{8} itself. The large relative density of NTE phonon modes in ZrW_{2}O_{8} actually reflects the degeneracy of volume-contracting spaghetti excitations, itself a function of the particular topology of this remarkable material.
我们使用 X 射线衍射、全散射和量子力学计算相结合的方法,确定了 ZrW2O8中水分驱动收缩的机制。H2O 分子在 ZrW2O8网络中的包含驱动了新的 W─O 键的协同形成,从而形成一维(─W─O─)n 链。ZrW2O8网络的拓扑结构使得链轨迹没有唯一的选择:相同的局部配位变化可以以大量不同的周期性传播。因此,ZrW2O8·H2O 高度无序,每个链的构型都形成了密集的非周期性“意大利面条”。这种新的连接通过 Zr 和 W 原子位置的大幅移动来收缩单元。未扭曲的母体结构向这种意大利面条相的波动,作为 ZrW2O8本身的关键负热膨胀(NTE)声子模式出现。ZrW2O8 中 NTE 声子模式的相对密度较大实际上反映了收缩体积的意大利面条激发的简并性,这本身是这种非凡材料特定拓扑结构的函数。