WestCHEM, Department of Pure & Applied Chemistry, University of Strathclyde, Glasgow G1 1XL, UK.
Chemistry. 2009 Sep 21;15(37):9494-504. doi: 10.1002/chem.200802555.
The first solid-state structures of ortho-sulfonated monoazo dyestuffs are reported and compared to those of their para- and meta-sulfonated analogues. The structures of the 16 Na, K, Cs, Mg, Ca, Sr, and Ba ortho-sulfonated salts are found to have fewer M-O(3)S bonds than their isomeric equivalents and this in turn means that the metal type is no longer the prime indicator of which structural type will be adopted. M-O(3)S bonds are replaced by M-OH(2), M-HOR and M-pi interactions, apparently for steric reasons. As well as new bonding motifs, the changed dye shape also leads to new packing motifs. The simple organic/inorganic layering ubiquitous to the para- and meta-sulfonated dye salt structures is replaced by variations (organic bilayers, inorganic channels), each of which correlates with a different degree of molecular planarity in the sulfonated azo dye anion.
首次报道了邻位磺化单偶氮染料的固态结构,并将其与对位和间位磺化类似物的结构进行了比较。发现 16 种 Na、K、Cs、Mg、Ca、Sr 和 Ba 邻位磺化盐的结构中 M-O(3)S 键的数量少于其异构物,这反过来意味着金属类型不再是决定采用哪种结构类型的主要因素。由于空间位阻的原因,M-O(3)S 键被 M-OH(2)、M-HOR 和 M-π 相互作用所取代。除了新的键合模式外,染料形状的改变也导致了新的堆积模式。对位和间位磺化染料盐结构中普遍存在的简单有机/无机层状结构被各种变化(有机双层、无机通道)所取代,每种变化都与磺化偶氮染料阴离子的分子平面度的不同程度相关。