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水相中具有空穴液体的分层有序α-磷酸锆片层

Hierarchically Ordered α-Zirconium Phosphate Platelets in Aqueous Phase with Empty Liquid.

作者信息

Lin Xi, Schmelter Dirk, Imanian Sadaf, Hintze-Bruening Horst

机构信息

BASF's Coatings Division, 48165, Muenster, Germany.

出版信息

Sci Rep. 2019 Nov 8;9(1):16389. doi: 10.1038/s41598-019-51934-y.

Abstract

Platelets of α-zirconium phosphate (α-ZrP) obtained from the reflux method in HPO are successfully exfoliated into water via the intercalation of alkanol amines. With volume fractions greater than 0.02 they are stacked into tactoids of few layers with a repeat distance in the order of 10 nm. The tactoids align into nematic liquid crystalline phases with irregularly wide interstices of empty liquid. Colloidal processing involves the freeze-drying of such anisotropic fluids and the dispersion of the restacked tacoids into aqueous dispersions of colloidal polymer particles of largely varying size which occupy the otherwise empty liquid between the α-ZrP tactoids and induce piling of the tactoids into columns. Real-time SAXS on drying films and TEM of the obtained coatings demonstrate that the stacked α-ZrP platelets and the polymer particles comprising liquid dry separately without polymer intercalation, while the morphology of the obtained composites can be tuned primarily by the size of the polymer colloids. Concomitant α-ZrP hydrolysis in the exfoliation step is scrutinized as a function of amine basicity and temperature. The role of zirconium based hydrolysis products in the hierarchical α-ZrP assembly is indirectly though consistently confirmed by opposing impacts of ultra-filtration and added oxoanions on the platelets' spacing, smoothness and aggregation. HAADF-TEM imaging of scattered, singular platelets and XRD peak analysis of the pristine solid shed light on the α-ZrP synthesis. Coexisting flakes and lacunae, both similar in size to the intra-layer crystal domains, suggest the stitching of proto-α-ZrP flakes into extended layers in accordance with our observations on the aging behaviour of α-ZrP dispersions as well as with literature data on related systems.

摘要

通过在磷酸中回流法获得的α-磷酸锆(α-ZrP)血小板,通过链烷醇胺的插层成功地剥离到水中。当体积分数大于0.02时,它们堆叠成几层的类晶体,重复距离约为10纳米。类晶体排列成向列型液晶相,空液体的间隙不规则地宽。胶体加工包括对这种各向异性流体进行冷冻干燥,以及将重新堆叠的类晶体分散到大小差异很大的胶体聚合物颗粒的水分散体中,这些颗粒占据了α-ZrP类晶体之间原本空的液体,并促使类晶体堆积成柱。对干燥膜的实时小角X射线散射和所得涂层的透射电子显微镜表明,堆叠的α-ZrP血小板和包含液体的聚合物颗粒在没有聚合物插层的情况下分别干燥,而所得复合材料的形态主要可通过聚合物胶体的大小来调节。在剥离步骤中伴随的α-ZrP水解作为胺碱度和温度的函数进行了仔细研究。通过超滤和添加含氧阴离子对血小板间距、光滑度和聚集的相反影响,间接但一致地证实了锆基水解产物在分层α-ZrP组装中的作用。对分散的单个血小板的高角度环形暗场透射电子显微镜成像和原始固体的X射线衍射峰分析揭示了α-ZrP的合成。共存的薄片和空隙,其大小都与层内晶体域相似,这表明原始α-ZrP薄片按照我们对α-ZrP分散体老化行为的观察以及相关系统的文献数据缝合到扩展层中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29e1/6841702/85c8e0f5565b/41598_2019_51934_Fig1_HTML.jpg

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