Chemical Sciences and Engineering Division, Argonne National Laboratory , Argonne, Illinois 60439, United States.
J Am Chem Soc. 2017 Dec 13;139(49):18003-18008. doi: 10.1021/jacs.7b09363. Epub 2017 Nov 29.
The influence of countercations (A) in directing the composition of monomeric metal-ligand (ML) complexes that precipitate from solution are often overlooked despite the wide usage of A in materials synthesis. Herein, we describe a correlation between the composition of ML complexes and A hydration enthalpies found for two related series of thorium (Th)-nitrate molecular compounds obtained by evaporating acidic aqueous Th-nitrate solutions in the presence of A counterions. Analyses of their chemical composition and solid-state structures demonstrate that A not only affects the overall solid-state packing of the Th-nitrato complexes but also influences the composition of the Th-nitrato monomeric anions themselves. Trends in composition and structure are found to correlate with A hydration enthalpies, such that the A with smaller hydration enthalpies associate with less hydrated and more anionic Th-nitrato complexes. This perspective, broader than the general assumption of size and charge as the dominant influence of A, opens a new avenue for the design and synthesis of targeted metal-ligand complexes.
尽管抗衡离子(A)在指导从溶液中沉淀的单体金属-配体(ML)配合物的组成方面被广泛应用,但人们常常忽视其影响。在此,我们描述了两个相关系列的钍(Th)-硝酸盐分子化合物组成与 A 水合焓之间的相关性,这些化合物是通过在 A 抗衡离子存在下蒸发酸性水溶液中的 Th-硝酸盐溶液获得的。对其化学组成和固态结构的分析表明,A 不仅影响 Th-硝酰基配合物的整体固态堆积,而且还影响 Th-硝酰基单体阴离子本身的组成。组成和结构的趋势与 A 水合焓相关,即水合焓较小的 A 与水合程度较低且更带阴离子的 Th-硝酰基配合物相关联。这种观点比大小和电荷作为 A 的主要影响的一般假设更为广泛,为有针对性的金属-配体配合物的设计和合成开辟了新途径。