首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >pH‐induced phase transition and crystallization of soft‐oxometalates (SOMs) into polyoxometalates (POMs): a study on crystallization from colloids
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pH‐induced phase transition and crystallization of soft‐oxometalates (SOMs) into polyoxometalates (POMs): a study on crystallization from colloids

机译:pH-诱导的相转变和软氧渗酸盐(SOM)结晶到多氧化盐(POMS):胶体结晶的研究

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In this work, we demonstrate a simple approach for growing 1D (one‐dimensional) inorganic chains of K(C 6 H 16 N) 3 Mo 8 O 26 ·H 2 O polyoxometalates (POMs) from its colloidal soft‐oxometalate (SOM) phase through the variation of pH. The structure is composed mainly of a 1D inorganic chain with a β‐Mo 8 O 26 4? binding node linked using K + via Mo—O—K linkages, which results in a cuboctahedral geometry for the K + ions. Crystal structure and Hirshfeld surface studies reveal the role of triethylammonium cations in restricting the growth of the 1D chain into 2D/3D (two‐/three‐dimensional) structures. During the nucleation process from the heterogeneous SOM phase, some of the intermolecular interactions in the dispersion phase are retained in the crystal structure, which was evidenced from residual O…O interactions. The crystallization of the species from its colloidal form as a function of pH was studied by the use of Raman spectroscopy and it was found that the increase in volume fraction of the β‐Mo 8 O 26 4? species in the crystallizing colloidal mixture with the decrease in pH is responsible for the nucleation. This was monitored by time‐dependent DLS (dynamic light scattering) measurement and zeta‐potential studies, revealing the co‐existence of both the crystal and the colloidal forms at pH 3–2. This brings us to the conclusion that in the crystallization of POMs, the colloidal SOM phase precedes the crystalline POM phase which occurs via a phase transition. This work could open up avenues for the study of POM formation from the stand‐point of colloidal chemistry and SOMs.
机译:在这项工作中,我们证明了一种简单的方法,用于从其胶体软氧氮酸盐(SOM)的k(C 6 H 16 N)3Mo 8 O 26·H 2 O多氧酸盐(POMS)的1D(一维)无机链的简单方法通过pH的变化相。该结构主要由1D无机链组成,β-Mo 8 O 26 4?绑定节点通过Mo-O-K连接使用k +连接,这导致k +离子的副叶氏菌几何形状。晶体结构和HIRSHFELD表面研究揭示三乙基铵阳离子在将1D链的生长限制为2D / 3D(两维)结构的作用。在从非均相SOM阶段的成核过程中,分散相中的一些分子间相互作用保留在晶体结构中,这是从残留的O ... O相互作用中的证明。通过使用拉曼光谱法研究了根据其胶体形式的物种的结晶,并发现β-Mo 8 O 26 4的体积分数增加了。结晶胶体混合物中的物种随着pH的降低是核心的原因。这是通过时间依赖性DLS(动态光散射)测量和Zeta-潜在的研究监测,揭示了在pH 3-2时晶体和胶体形式的共存。这使我们得出结论,在POMS的结晶中,胶体SOM阶段之前通过相转变发生的结晶POM阶段。这项工作可以从胶体化学和SOM的立式点开始研究POM形成的途径。

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