Synthesis and Characterization of a Novel 32‐Membered Unsymmetrical Dinucleating [N12] Macrocycle: Preparation of Bimetallic Complexes M2LX2(ClO4)2 (M = Zn, Cd, or Hg; X = Cl, NCS, or NO3)

Z. A. Siddiqi, Mohammad Mansoob Khan
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引用次数: 7

Abstract

Abstract The condensation reaction of N‐acetylaniline with 1,3‐diaminopropane in 2:1 mole ratio under reflux condition generates an intermediate species having C˭N bonds. The in situ reaction of the intermediate with HCHO and 1,3‐diaminopropane in the presence of perchloric acid results in an off‐white solid product. Analytical, FAB mass, IR, 1H NMR and electronic spectral data of this solid are consistent with the formation of the dihydroperchlorate salt of an unsymmetrical 32‐membered [N12] macrocycle [L · 2HClO4] via a capping mechanism of the intermediate species. Reactions of [L · 2HClO4] with Group 12 metal salts, MX2, and their precursors, [M(Ph3P)2Cl2], produce bimetallic complexes with the stoichiometries M2LX2(ClO4)2 (M = Zn, Cd or Hg; X = Cl, NO3, or NCS) and M2LCl2(ClO4)2, respectively, with liberation of 2 mol equiv. of the ancillary ligand, Ph3P, from the precursors. Physico‐chemical and spectroscopic data of the complexes confirm encapsulation of two metal ions in the macrocyclic cavity via coordination through nitrogen atoms of the unsymmetrical aza groups and the counter anions occupy apical positions in the octahedral geometry around the metal ions. The thermodynamic first ionic association constant and related parameters have been determined from conductometric studies using the Fuoss and Edelson method and are discussed.
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新型32元非对称双核[N12]大环的合成与表征:M2LX2(ClO4)2 (M = Zn, Cd, Hg)双金属配合物的制备X = Cl, NCS,或NO3)
摘要N -乙酰苯胺与1,3 -二氨基丙烷在回流条件下以2:1摩尔比缩合反应生成具有C˭N键的中间产物。中间体与HCHO和1,3 -二氨基丙烷在高氯酸存在下的原位反应产生了一种白色固体产物。该固体的分析、FAB质量、IR、1H NMR和电子能谱数据与非对称32元[N12]大环[L·2HClO4]通过中间物质的封盖机制形成的二氢高氯酸盐相一致。[L·2HClO4]与12族金属盐MX2及其前体[M(Ph3P)2Cl2]反应生成化学计量M2LX2(ClO4)2 (M = Zn、Cd或Hg)的双金属配合物;X = Cl, NO3,或NCS)和M2LCl2(ClO4)2,从前体中释放出2mol等量的辅助配体Ph3P。配合物的物理化学和光谱数据证实了两个金属离子在大环腔中通过不对称氮基氮原子的配位被包裹,而反阴离子在金属离子周围的八面体几何结构中占据顶端位置。用Fuoss和Edelson方法从电导学研究中确定了热力学第一离子结合常数和相关参数,并进行了讨论。
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