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The design, synthesis and characterization of new building blocks for the preparation of molecule-based magnetic materials.

机译:用于制备基于分子的磁性材料的新型构件的设计,合成和表征。

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摘要

Two new families of building blocks have been prepared and fulls characterized and their coordination chemistry exploited for the preparation of molecule-based magnetic materials. The first class of compounds were prepared by exploiting the chemistry of 3,3'-diamino-2,2'-bipyridine together with 2-pyridine carbonyl chloride or 2-pyridine aldehyde. Two new ligands, 2,2'-bipyridine-3,3'[2-pyridinecarboxamide] (L1, 2.3) and N'-bis(2-pyridylmethyl) [2,2'bipyridine]-3,3'-diimine (L2, 2.7) were prepared and characterized. For ligand L1, two copper(II) coordination compounds were isolated with stoichiometries [Cu 2(L1)(hfac)2] (2.4) and [Cu(L 1)Cl2] (2.5). The molecular structures of both complexes were determined by X-ray crystallography. In both complexes the ligand is in the dianionic form and coordinates the divalent Cu(II) ions via one amido and two pyridine nitrogen donor atoms. In (2.4), the coordination geometry around both CuII ions is best described as distorted trigonal bipyramidal where the remaining two coordination sites are satisfied by hfac counterions. In (2.5), both Cu(II) ions adopt a (4+1) distorted square pyramidal geometry. One copper forms a longer apical bond to an adjacent carbonyl oxygen atom, whereas the second copper is chelated to a neighboring Cu-Cl chloride ion to afford chloride bridged linear [Cu2(L1)Cl2]2 tetramers that run along the c-axis of the unit cell. The magnetic susceptibility data for (2.4) reveal the occurrence of weak antiferromagnetic interactions between the copper(II) ions. In contrast, variable temperature magnetic susceptibility measurements for (2.5) reveal more complex magnetic properties with the presence of ferromagnetic exchange between the central dimeric pair of copper atoms and weak antiferromagnetic exchange between the outer pairs of copper atoms. The Schiff-base bis-imine ligand ( L2, 2.7) was found to be highly reactive; single crystals grown from dry methanol afforded compound (2.14) for which two methanol molecules had added across the imine double bond. The susceptibility of this ligand to nucleophilic attack at its imine functionality assisted via chelation to Lewis acidic metal ions adds an interesting dimension to its coordination chemistry. In this respect, a Co(II) quaterpyridine-type complex was prepared via a one-pot transformation of ligand L2 in the presence of a Lewis acidic metal salt. The rearranged complex was characterized by X-ray crystallography and a reaction mechanism for its formation has been proposed. Three additional rearranged complexes (2.13), (2.17) and (2.19) were also isolated when ligand (L2, 2.7) was reacted with transition metal ions. The molecular structures of all three complexes have been determined by X-ray crystallography.;The second class of compounds that are reported in this thesis, are the two diacetyl pyridine derivatives, 4-pyridyl-2,6-diacetylpyridine ( 5.5) and 2,2'-6,6'-tetraacety1-4,4'-bipyridine (5.15). Both of these compounds have been designed as intermediates for the metal templated assembly of a Schiff-base N3O2 macrocycle. From compound (5.15), a covalently tethered dimeric Mn(II) macrocyclic compound of general formula {[Mn(N3O2)]Cl·H 2O}22Cl·10.5H2O (5.16) was prepared and characterized. The X-ray analysis of (5.16) reveals that the two manganese ions assume a pentagonal-bipyramidal geometry with the macrocycle occupying the pentagonal plane and the axial positions being filled by a halide ion and a H2O molecule. Magnetic susceptibility data reveal the occurrence of antiferromagnetic interactions between covalently tethered Mn(II)-Mn(II) dimeric units. Following this methodology a Co(II) analogue (5.17) has also been prepared which is isostructural with (5.16).
机译:已经准备了两个新的构建基家族,并对它们进行了全面表征,并利用它们的配位化学来制备基于分子的磁性材料。通过利用3,3'-二氨基-2,2'-联吡啶与2-吡啶羰基氯或2-吡啶醛的化学反应来制备第一类化合物。两个新的配体2,2'-联吡啶-3,3'[2-吡啶甲酰胺](L1,2.3)和N'-双(2-吡啶甲基)[2,2'联吡啶] -3,3'-二亚胺(制备并表征L2,2.7)。对于配体L1,以化学计量比[Cu 2(L1)(hfac)2](2.4)和[Cu(L 1)Cl2](2.5)分离了两种铜(II)配位化合物。两种配合物的分子结构通过X射线晶体学测定。在两种络合物中,配体均为双阴离子形式,并通过一个酰胺基和两个吡啶氮供体原子配位二价Cu(II)离子。在(2.4)中,两个CuII离子周围的配位几何形状最好描述为扭曲的三角锥型,其中剩余的两个配位点由hfac抗衡离子满足。在(2.5)中,两个Cu(II)离子均采用(4 + 1)扭曲的方形锥体形状。一种铜与相邻的羰基氧原子形成更长的顶端键,而另一种铜与相邻的Cu-Cl氯离子螯合,得到氯桥联的线性[Cu2(L1)Cl2] 2四聚体,该四聚体沿着C轴延伸。单位单元格。 (2.4)的磁化率数据揭示了铜(II)离子之间弱的反铁磁相互作用的发生。相比之下,(2.5)的可变温度磁化率测量显示,在中心二聚体铜原子对之间存在铁磁交换,而在外部铜原子对之间存在弱反铁磁交换,则磁特性更为复杂。发现席夫碱双亚胺配体(L2,2.7)具有高反应活性。用无水甲醇生长的单晶得到化合物(2.14),其中在亚胺双键上添加了两个甲醇分子。该配体对亚胺官能团的亲核攻击易感性,通过与路易斯酸性金属离子的螯合而得以辅助,为其配位化学增加了一个有趣的方面。在这方面,在路易斯酸性金属盐存在下,通过配体L2的一锅法转化制备Co(II)四吡啶类配合物。通过X射线晶体学对重排的配合物进行了表征,并提出了其形成的反应机理。当配体(L2,2.7)与过渡金属离子反应时,还分离了另外三个重排的配合物(2.13),(2.17)和(2.19)。所有三种配合物的分子结构均已通过X射线晶体学测定。本论文报道的第二类化合物是两种二乙酰吡啶衍生物,分别为4-吡啶基-2,6-二乙酰吡啶(5.5)和2 ,2′-6,6′-四乙酰基1-4,4′-联吡啶(5.15)。这两种化合物均已设计为席夫碱N3O2大环化合物金属模板组装的中间体。由化合物(5.15)制备通式{[Mn(N3O2)] Cl·H 2O} 22Cl·10.5H2O(5.16)的共价键合二聚的Mn(II)大环化合物。 (5.16)的X射线分析表明,这两种锰离子呈五边形-双锥体的几何形状,其中大环占据了五边形平面,轴向位置被卤离子和H2O分子填充。磁化率数据揭示了共价连接的Mn(II)-Mn(II)二聚体单元之间反铁磁相互作用的发生。按照该方法,还制备了与(5.16)同构的Co(II)类似物(5.17)。

著录项

  • 作者

    Wang, Jian.;

  • 作者单位

    Brock University (Canada).;

  • 授予单位 Brock University (Canada).;
  • 学科 Chemistry Organic.
  • 学位 M.Sc.
  • 年度 2007
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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