Department of Chemistry, Graduate School of Science, the University of Tokyo, Tokyo, Japan.
Sensors (Basel). 2013 May 2;13(5):5671-85. doi: 10.3390/s130505671.
Macrocyclic compounds that can bind cationic species efficiently and selectively with their cyclic cavities have great potential as excellent chemosensors for metal ions. Recently, we have developed a tetraoxime-type tetraazamacrocyclic ligand 1 formed through a facile one-pot cyclization reaction. Aiming to explore and bring out the potential of the tetraoxime macrocycle 1 as a chelating sensor, we report herein the preparation of several kinds of silver complexes of 1 and their unique coordination structures determined by single-crystal X-ray diffraction analyses. As a result, the formation of two kinds of discrete structures, monomeric complexes [Ag(1)X] (X = counter anions) and a dimeric complex [Ag2(1)2]X2, and two kinds of polymeric structures from a mononuclear complex, [Ag(1)]nXn, and from a dinuclear complex, [Ag2(1)X2]n, was demonstrated. In the resulting complexes, the structurally flexible macrocyclic ligand 1 was found to provide several different coordination modes. Notably, in some silver complexes of 1, AgI-AgI interactions were observed with different AgI-AgI distances which depend on the kind of counter anions and the chemical composition.
大环化合物可以通过其环状空腔高效且选择性地结合阳离子物质,因此具有作为金属离子的优异化学传感器的巨大潜力。最近,我们开发了一种通过简便的一锅环化反应形成的四肟型四氮杂大环配体 1。为了探索并发挥四肟大环 1 作为螯合传感器的潜力,我们在此报告了 1 的几种银配合物的制备及其通过单晶 X 射线衍射分析确定的独特配位结构。结果表明,形成了两种离散结构,单核配合物 [Ag(1)X](X 为抗衡阴离子)和二聚体配合物 [Ag2(1)2]X2,以及一种来自单核配合物的两种聚合物结构,[Ag(1)]nXn 和一种来自二核配合物的聚合物结构 [Ag2(1)X2]n。在所得到的配合物中,结构灵活的大环配体 1 被发现提供了几种不同的配位方式。值得注意的是,在 1 的一些银配合物中,观察到了不同的 AgI-AgI 距离的 AgI-AgI 相互作用,这取决于抗衡阴离子的种类和化学组成。