Titi Hatem M, Karmakar Anirban, Goldberg Israel
School of Chemistry, Sackler Faculty of Exact Sciences, Tel-Aviv University, Ramat-Aviv, 69978 Tel-Aviv, Israel.
Acta Crystallogr C. 2010 Sep;66(Pt 9):m238-44. doi: 10.1107/S0108270110031318. Epub 2010 Aug 18.
We report the synthesis of the 2,2'-[2,5-bis(carboxymethoxy)-1,4-phenylene]diacetic acid (TALH(4)) ligand and the structures of its adducts with ammonium, namely diammonium 2,2'-[2,5-bis(carboxymethyl)-1,4-phenylenedioxy]diacetate, 2NH(4)(+).C(14)H(12)O(10)(2-), (I), lanthanum, namely poly[[aquabis[mu(4)-2,2'-(2-carboxylatomethyl-5-carboxymethyl-1,4-phenylenedioxy)diacetato]dilanthanum(III)] monohydrate], {[La(2)(C(14)H(11)O(10))(2)(H(2)O)].H(2)O}(n), (II), and zinc cations, namely poly[[{mu(4)-2,2'-[2,5-bis(carboxymethyl)-1,4-phenylenedioxy]diacetato}zinc(II)] trihydrate], {[Zn(C(14)H(12)O(10))].3H(2)O}(n), (III), and poly[[diaqua(mu(2)-4,4'-bipyridyl){mu(4)-2,2'-[2,5-bis(carboxymethyl)-1,4-phenylenedioxy]diacetato}dizinc(II)] dihydrate], {[Zn(2)(C(14)H(10)O(10))(C(10)H(8)N(2))(H(2)O)(2)].2H(2)O}(n), (IV), the formation of all four being associated with deprotonation of TALH(4). Adduct (I) is a diammonium salt of TALH(2)(2-), with the ions located on centres of crystallographic inversion. Its crystal structure reveals a three-dimensional hydrogen-bonded assembly of the component species. Reaction of TALH(4) with lanthanum trinitrate hexahydrate yielded a two-dimensional double-layer coordination polymer, (II), in which the La(III) cations are nine-coordinate. With zinc dinitrate hexahydrate, TALH(4) forms 1:1 two-dimensional coordination polymers, in which every Zn(II) cation is linked to four neighbouring TALH(2)(2-) anions and each unit of the organic ligand is coordinated to four different tetrahedral Zn(II) cation connectors. The crystal structure of this compound accommodates molecules of disordered water at the interface between adjacent polymeric layers to give (III), and it has been determined with low precision. Another polymer assembly, (IV), was obtained when zinc dinitrate hexahydrate was reacted with TALH(4) in the presence of an additional 4,4'-bipyridyl ligand. In the crystal structure of (IV), the bipyridyl and TAL(4-) entities are located on two different inversion centres. The ternary coordination polymers form layered arrays with corrugated surfaces, with the Zn(II) cation connectors revealing a tetrahedral coordination environment. The two-dimensional polymers in (II)-(IV) are interconnected with each other by hydrogen bonds involving the metal-coordinated and noncoordinated molecules of water. TALH(4) is doubly deprotonated, TALH(2)(2-), in (I) and (III), triply deprotonated, viz. TALH(3-), in (II), and quadruply deprotonated, viz. TAL(4-), in (IV). This report provides the first structural characterization of TALH(4) (in deprotonated form) and its various supramolecular adducts. It also confirms the potential utility of this tetraacid ligand in the formulation of coordination polymers with metal cations.
我们报道了2,2'-[2,5-双(羧甲基氧基)-1,4-亚苯基]二乙酸(TALH(4))配体的合成及其与铵形成的加合物的结构,即2,2'-[2,5-双(羧甲基)-1,4-苯二氧基]二乙酸二铵,2NH(4)(+).C(14)H(12)O(10)(2-),(I);与镧形成的加合物,即聚[[水双[μ(4)-2,2'-(2-羧基甲基-5-羧甲基-1,4-苯二氧基)二乙酸根合]二镧(III)]一水合物],{[La(2)(C(14)H(11)O(10))(2)(H(2)O)].H(2)O}(n),(II);以及与锌阳离子形成的加合物,即聚[[{μ(4)-2,2'-[2,5-双(羧甲基)-1,4-苯二氧基]二乙酸根合}锌(II)]三水合物],{[Zn(C(14)H(12)O(10))].3H(2)O}(n),(III);还有聚[[二水合(μ(2)-4,4'-联吡啶){μ(4)-2,2'-[2,5-双(羧甲基)-1,4-苯二氧基]二乙酸根合}二锌(II)]二水合物],{[Zn(2)(C(14)H(10)O(10))(C(10)H(8)N(2))(H(2)O)(2)].2H(2)O}(n),(IV)。这四种加合物的形成均与TALH(4)的去质子化有关。加合物(I)是TALH(2)(2-)的二铵盐,离子位于晶体学反演中心。其晶体结构揭示了各组成物种的三维氢键组装结构。TALH(4)与硝酸镧六水合物反应生成二维双层配位聚合物(II),其中La(III)阳离子为九配位。TALH(4)与硝酸锌六水合物形成1:1二维配位聚合物,其中每个Zn(II)阳离子与四个相邻的TALH(2)(2-)阴离子相连,且有机配体的每个单元与四个不同的四面体Zn(II)阳离子连接体配位。该化合物的晶体结构在相邻聚合物层之间的界面处容纳无序水分子,得到(III),其结构测定精度较低。当硝酸锌六水合物在额外的4,4'-联吡啶配体存在下与TALH(4)反应时,得到另一种聚合物组装体(IV)。在(IV)的晶体结构中,联吡啶和TAL(4-)实体位于两个不同的反演中心。三元配位聚合物形成具有波纹表面的层状阵列,Zn(II)阳离子连接体呈现四面体配位环境。(II)-(IV)中的二维聚合物通过涉及金属配位和未配位水分子的氢键相互连接。在(I)和(III)中,TALH(4)被双重去质子化,形成TALH(2)(2-);在(II)中,被三重去质子化,即TALH(3-);在(IV)中,被四重去质子化,即TAL(4-)。本报告首次对TALH(4)(去质子化形式)及其各种超分子加合物进行了结构表征。它还证实了这种四酸配体在与金属阳离子形成配位聚合物方面潜在的实用性。