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将31P扩散有序核磁共振光谱与分子力学相结合,作为解析水溶液中基于多金属氧酸盐的两亲性纳米杂化物化学结构的有力工具。

Integrating 31P DOSY NMR spectroscopy and molecular mechanics as a powerful tool for unraveling the chemical structures of polyoxomolybdate-based amphiphilic nanohybrids in aqueous solution.

作者信息

Shestakova Pavletta, Absillis Gregory, Martin-Martinez Francisco J, De Proft Frank, Willem Rudolph, Parac-Vogt Tatjana N

机构信息

NMR Laboratory, Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, Acad. G. Bontchev Str., B1.9, Sofia 1113 (Bulgaria); KU Leuven, Department of Chemistry, Molecular Design and Synthesis, Laboratory of Bioinorganic Chemistry, Celestijnenlaan 200F, 3001 Leuven (Belgium), Fax: (32) 16-32-79-92.

出版信息

Chemistry. 2014 Apr 25;20(18):5258-70. doi: 10.1002/chem.201304969. Epub 2014 Apr 11.

Abstract

Novel organic-inorganic hybrids of various sizes were generated by reaction of 1,8-octanediphosphonic acid (ODP) and (NH4)6Mo7O24 in aqueous solution. The formation of rodlike hybrids with variable numbers of covalently bound ODP and polyoxomolybdate (POM) units can be tuned as a function of increasing (NH4)6Mo7O24 concentration at fixed ODP concentration. The chemical structure of the ODP/POM hybrids was characterized by (1)H, (31)P, and (95)Mo NMR spectroscopy. Heteronuclear (31)P DOSY (diffusion- ordered NMR spectroscopy) and molecular mechanics (MM) calculations were applied to determine the size and shape of the nanosized hybrids generated at various ODP/POM ratios. For this purpose, the structures of ODP/POM hybrids with variable numbers of ODP and POM units were optimized by MM and then approximated as cylinder-shaped objects by using a recently described mathematical algorithm. The thus-obtained cylinder length and diameter were further used to calculate the expected diffusion coefficients of the ODP/POM hybrids. Comparison of the calculated and experimentally determined diffusion coefficients led to the most probable ODP/POM hybrid length for each sample composition. The (31)P DOSY results show that the length of the hybrids increases with increasing POM concentration and reaches a maximum corresponding to an average of 8 ODP/7 POM units per chain at a sample composition of 20 mM ODP and 14 mM POM. With excess POM, above the latter concentration, the formation of shorter-chain hybrids terminated by Mo7 clusters at one or both ends was evidenced on further increasing the POM concentration. The results demonstrate that the combination of (31)P DOSY and MM, although virtually unexplored in POM chemistry, is a powerful innovative strategy for the detailed characterization of nanosized organic-inorganic POM-based hybrids in solution.

摘要

通过1,8 - 辛二膦酸(ODP)与(NH4)6Mo7O24在水溶液中反应生成了各种尺寸的新型有机 - 无机杂化物。在固定ODP浓度下,随着(NH4)6Mo7O24浓度的增加,具有不同数量共价结合的ODP和多金属氧酸盐(POM)单元的棒状杂化物的形成可以得到调控。ODP/POM杂化物的化学结构通过(1)H、(31)P和(95)Mo核磁共振光谱进行表征。应用异核(31)P扩散排序核磁共振光谱(DOSY)和分子力学(MM)计算来确定在各种ODP/POM比例下生成的纳米尺寸杂化物的大小和形状。为此,通过MM对具有不同数量ODP和POM单元的ODP/POM杂化物的结构进行了优化,然后使用最近描述的数学算法将其近似为圆柱状物体。由此获得的圆柱长度和直径进一步用于计算ODP/POM杂化物的预期扩散系数。计算得到的扩散系数与实验测定的扩散系数的比较得出了每种样品组成最可能的ODP/POM杂化物长度。(31)P DOSY结果表明,杂化物的长度随着POM浓度的增加而增加,在样品组成为20 mM ODP和14 mM POM时达到最大值,对应于每条链平均8个ODP/7个POM单元。当POM过量,高于后者浓度时,随着POM浓度的进一步增加,有证据表明形成了在一端或两端由Mo7簇终止的短链杂化物。结果表明,(31)P DOSY和MM的结合,尽管在POM化学中几乎未被探索,但却是一种强大的创新策略,可用于详细表征溶液中基于纳米尺寸有机 - 无机POM的杂化物。

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