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固态中双位点冠醚铀酰沙罗酚受体的离子对结合

Ion Pair Binding in the Solid-State with Ditopic Crown Ether Uranyl Salophen Receptors.

作者信息

Mäkelä Toni, Minkkinen Miia-Elina, Rissanen Kari

机构信息

viz. University of Jyvaskyla , Department of Chemistry, Nanoscience Center, P.O. Box. 35, FI-40014 University of Jyvaskyla, Finland.

出版信息

Inorg Chem. 2016 Feb 1;55(3):1339-46. doi: 10.1021/acs.inorgchem.5b02780. Epub 2016 Jan 20.

Abstract

Two ditopic uranyl salophen receptors with benzo-15-crown-5 and benzo-18-crown-6 units (R(1) and R(2), respectively) have been synthesized from commercially available starting materials. Comprehensive studies on the solid-state ion pair complexation with various alkali and ammonium halides have been conducted. From the 19 obtained solid-state structures (6 structures with R(1), 13 structures with R(2)), three general interaction motifs I-III have been observed. Interaction motif I has a separated ion pair with the cation coordinated to the crown ether unit, and the anion or oxygen containing solvent molecule coordinated to the uranyl center. The interaction motif II manifests a polymeric structure with a contact ion pair between the uranyl-coordinated anion and cation coordinated in the crown ether in the adjacent receptor. Interaction motif III consists of a more general stacked packing structure of the receptors with or without ion pairs. From the obtained solid-state structures, the complex R(2)·NaI shows an interesting formation of infinite coordination polymeric structure where the crown ether complexed sodium cations and the O═U═O units of the adjacent receptors form a nearly linear 1-D chains. In the course of this work also the first solid-state structure of uranyl salophen acetate complex was obtained (R(2)·KAcO).

摘要

已由市售起始原料合成了两种分别带有苯并 - 15 - 冠 - 5 和苯并 - 18 - 冠 - 6 单元的双齿铀酰双水杨醛缩邻苯二胺受体(分别为R(1) 和 R(2))。已对其与各种碱金属和卤化铵的固态离子对络合进行了全面研究。从得到的19个固态结构(6个R(1) 的结构,13个R(2) 的结构)中,观察到了三种一般的相互作用模式I - III。相互作用模式I具有一个分离的离子对,其中阳离子与冠醚单元配位,阴离子或含氧化合物溶剂分子与铀酰中心配位。相互作用模式II表现为一种聚合物结构,在相邻受体中,铀酰配位的阴离子与冠醚中配位的阳离子之间存在接触离子对。相互作用模式III由受体的更一般的堆积结构组成,有或没有离子对。从得到的固态结构来看,配合物R(2)·NaI显示出一种有趣的无限配位聚合物结构的形成,其中冠醚络合的钠阳离子与相邻受体的O═U═O单元形成近乎线性的一维链。在这项工作过程中,还得到了铀酰双水杨醛缩邻苯二胺乙酸盐配合物的第一个固态结构(R(2)·KAcO)。

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