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层状微孔二膦酸锡(IV)

Layered microporous tin(IV) bisphosphonates.

作者信息

Gómez-Alcántara María del Mar, Cabeza Aurelio, Olivera-Pastor Pascual, Fernández-Moreno Francisco, Sobrados Isabel, Sanz Jesús, Morris Russell E, Clearfield Abraham, Aranda Miguel A G

机构信息

Departamento de Química Inorgánica, Universidad de Málaga, Campus Teatinos, 29071 Málaga, Spain.

出版信息

Dalton Trans. 2007 Jun 21(23):2394-404. doi: 10.1039/b618762e.

Abstract

This article reports the hydrothermal synthesis and characterization of two new series of porous tin(IV) phosphonophenoxyphenylphosphonates with controlled pore size distributions, using as precursor the 4-(4'-phosphonophenoxy)phenyl phosphonic acid, [H2O3P-C6H4]2-O. Supermicroporous solids (S(BET), 300-400 m2 g(-1)) were obtained employing n-alcohol (C1-C6)-water mixtures (solvents ratio 1 : 1), in the presence of hydrofluoric acid. X-Ray powder diffraction shows that these compounds are semi-crystalline and the local environments around the phosphorus and tin elements have been studied by 31P and 119Sn MAS-NMR spectroscopy, respectively. The microstructure (particle sizes and shapes) of these phosphonates has been analyzed by scanning and transmission electron microscopy. This study shows that the microstructures of single-ligand (for instance tin(IV) phenylphosphonate) and cross-linked tin(IV) bisphosphonates are different. Tin(IV) phenylphosphonate crystallizes as micron-sized spheres, theta approximately 1-2 microm, formed by the aggregation of nanospheres, whereas tin(IV) bisphosphonates crystallize as microparticles larger than 20 microm. The textural properties of these porous solids were characterized by N2 and CO2 sorption isotherms. The key result of this work is that maxima of pore size distributions smoothly shift from 12 to 16 angstroms upon increasing the chain length of the alcohol. The microporosity of tin(IV) bisphosphonates is compatible with a double role played by the phosphonate groups acting as a pillar between adjacent layers and as a component of the hybrid organic-inorganic layers.

摘要

本文报道了以4-(4'-膦酰苯氧基)苯基膦酸[H2O3P-C6H4]2-O为前驱体,水热合成并表征了两个新系列孔径分布可控的多孔锡(IV)膦酰苯氧基苯基膦酸盐。在氢氟酸存在下,采用正醇(C1-C6)-水混合物(溶剂比1:1)获得了超微孔固体(S(BET),300-400 m2 g(-1))。X射线粉末衍射表明这些化合物是半结晶的,并且分别通过31P和119Sn MAS-NMR光谱研究了磷和锡元素周围的局部环境。通过扫描电子显微镜和透射电子显微镜分析了这些膦酸盐的微观结构(粒径和形状)。该研究表明单配体(例如锡(IV)苯基膦酸盐)和交联锡(IV)双膦酸盐的微观结构不同。锡(IV)苯基膦酸盐结晶为微米级球体,θ约为1-2微米,由纳米球聚集形成,而锡(IV)双膦酸盐结晶为大于20微米的微粒。通过N2和CO2吸附等温线表征了这些多孔固体的织构性质。这项工作的关键结果是,随着醇链长度的增加,孔径分布最大值从12埃平滑地移动到16埃。锡(IV)双膦酸盐的微孔性与膦酸酯基团所起的双重作用相匹配,该基团既作为相邻层之间的支柱,又作为有机-无机杂化层的组成部分。

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