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“哑铃型”和“三角型”无机-有机杂化多金属氧酸盐簇的设计与合成及其通过 ESI-MS 分析进行的表征。

Design and synthesis of "dumb-bell" and "triangular" inorganic-organic hybrid nanopolyoxometalate clusters and their characterisation through ESI-MS analyses.

机构信息

WestCHEM, Department of Chemistry, The University of Glasgow, G12 8QQ, UK.

出版信息

Chemistry. 2011 Jun 27;17(27):7472-9. doi: 10.1002/chem.201100257. Epub 2011 May 18.

DOI:10.1002/chem.201100257
PMID:21594915
Abstract

A series of tris(hydroxymethyl)aminomethane (TRIS)-based linear (bis(TRIS)) and triangular (tris(TRIS)) ligands has been synthesised and were covalently attached to the Wells-Dawson type cluster P(2)V(3)W(15)O(62) to generate a series of nanometer-sized inorganic-organic hybrid polyoxometalate clusters. These huge hybrids, with a molecular mass similar to that of small proteins in the range of ≈10-16 kDa, were unambiguously characterised by using high-resolution ESI-MS. The ESI-MS spectra of these compounds revealed, in negative ion mode, a characteristic pattern showing distinct groups of peaks corresponding to different anionic charge states ranging from 3(-) to 8(-) for the hybrids. Each peak in these individual groups could be unambiguously assigned to the corresponding hybrid cluster anion with varying combinations of tetrabutylammonium (TBA) and other cations. This study therefore highlights the prowess of the high-resolution ESI-MS for the unambiguous characterisation of large, nanoscale, inorganic-organic hybrid clusters that have huge mass, of the order of 10-16 kDa. Also, the designed synthesis of these compounds points to the fact that we were able to achieve a great deal of structural pre-design in the synthesis of these inorganic-organic hybrid polyoxometalates (POMs) by means of a ligand design route, which is often not possible in traditional "one-pot" POM synthesis.

摘要

一系列基于三羟甲基氨基甲烷(TRIS)的线性(双(TRIS))和三角形(三(TRIS))配体已被合成,并共价连接到 Wells-Dawson 型簇P(2)V(3)W(15)O(62)上,生成一系列纳米级的无机-有机杂化多金属氧酸盐簇。这些巨大的杂化物的分子量与 ≈10-16 kDa 范围内的小蛋白质相似,通过使用高分辨率 ESI-MS 可以明确地对其进行表征。这些化合物的 ESI-MS 谱在负离子模式下显示出一种特征模式,显示出不同的峰组,对应于不同的阴离子电荷状态,范围从 3(-)到 8(-)。这些峰组中的每个峰都可以明确地分配给相应的混合簇阴离子,其中具有不同的四丁基铵(TBA)和其他阳离子组合。因此,该研究强调了高分辨率 ESI-MS 在明确表征具有 10-16 kDa 数量级的大尺寸、纳米级无机-有机杂化簇方面的强大功能。此外,这些化合物的设计合成表明,我们能够通过配体设计途径在这些无机-有机杂化多金属氧酸盐(POM)的合成中实现很大程度的结构预设计,这在传统的“一锅法”POM 合成中通常是不可能的。

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