School of Chemistry, WestCHEM, University of Glasgow , Glasgow, G12 8QQ, U.K.
J Am Chem Soc. 2014 Sep 10;136(36):12753-61. doi: 10.1021/ja5067916. Epub 2014 Aug 26.
Despite the vast number of polyoxometalate clusters now known, an ongoing and important challenge is to understand causality in the assembly of "complex" clusters at a mechanistic level, since this is the only way the rational, targeted synthesis of new compounds will ever be achieved. Often, the complexity of the reactions themselves makes such investigations near impossible, as very small changes can often make dramatic differences. Herein, we explore a very simple [A + B] binary synthetic system that gives rise to the facile assembly of two isomeric anions, Fe(III)(H2O)2{γ-Fe(III)SiW9O34(H2O)}2 (1) and Fe(III)(H2O)2{γ-Fe(III)2SiW8O33(H2O)2}{γ-SiW10O35} (2), which can be formed as individual and dimeric species (3) and (4). Furthermore, the simple binary nature of this synthetic system allowed its investigation by a comprehensive time-resolved ESI-MS analysis, yielding unprecedented mechanistic information regarding the initial interactions and reorganizations of the {γ-SiW10} precursor in the presence of Fe(2+).
尽管现在已经知道了大量的多金属氧酸盐簇,但理解“复杂”簇在机制水平上的组装的因果关系仍然是一个持续存在且重要的挑战,因为这是实现新化合物合理、有针对性合成的唯一途径。通常,反应本身的复杂性使得这样的研究几乎不可能,因为很小的变化通常会产生巨大的差异。在这里,我们探索了一个非常简单的[A + B]二元合成系统,该系统能够容易地组装两种异构阴离子,Fe(III)(H2O)2{γ-Fe(III)SiW9O34(H2O)}2 (1) 和 Fe(III)(H2O)2{γ-Fe(III)2SiW8O33(H2O)2}{γ-SiW10O35} (2),它们可以作为单个和二聚体物种(3)和(4)形成。此外,这个合成系统的简单二元性质允许通过全面的时间分辨 ESI-MS 分析进行研究,提供了关于在 Fe(2+)存在下{γ-SiW10}前体的初始相互作用和重排的前所未有的机制信息。