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Synthesis and Structural Studies of Calcium and Magnesium Phosphinate and Phosphonate Compounds.

机译:钙和镁的膦酸酯和膦酸酯化合物的合成和结构研究。

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摘要

The work presented herein describes synthetic methodologies leading to the design of a wide array of magnesium and calcium based phosphinate and phosphonates with possible applications as bone scaffolding materials or additives to bone cements. The challenge to the chemistry of the alkaline earth phosphonate target compounds includes poor solubility of compounds, and poorly understood details on the control of the metal's coordination environment. Hence, less is known on phosphonate based alkaline earth metal organic frameworks as compared to transition metal phosphonates. Factors governing the challenges in obtaining crystalline, well-defined magnesium and calcium solids lie in the large metal diameters, the absence of energetically available d-orbitals to direct metal geometry, as well as the overall weakness of the metal-ligand bonds.;A significant part of this project was concerned with the development of suitable reaction conditions to obtain X-ray quality crystals of the reaction products to allow for structural elucidation of the novel compounds. Various methodologies to aid in crystal growth including hydrothermal methods and gel crystallization were employed.;We have used phosphinate and phosphonate ligands with different number of phosphorus oxygen atoms as well as diphosphonates with different linker lengths to determine their effects on the overall structural features. An interesting correlation is observed between the dimensionality of products and the increasing number of donor oxygen atoms in the ligands as we progress from phosphinic acid to the phosphorous acids. As an example, monophosphinate ligand only yielded one-dimensional compounds, whereas the phosphonates crystallize as one and two-dimensional compounds, and the di- and triphosphonate based compounds display two or three-dimensional geometries.;This thesis provides a selection of calcium and magnesium compounds with one-dimensional geometry, as represented in a calcium phosphinate to novel two-dimensional sheets of magnesium and pillared calcium phosphonates. The preparation of these novel compounds has led to the establishment of synthetic protocols that allow for the direct preparation of compounds with defined structural features.
机译:本文介绍的工作描述了导致设计多种镁和钙基次膦酸酯和膦酸酯的合成方法,其可能用作骨支架材料或骨水泥的添加剂。碱土金属膦酸酯目标化合物在化学上的挑战包括化合物的溶解性差,以及对金属配位环境的控制了解甚少。因此,与过渡金属膦酸酯相比,基于膦酸酯的碱土金属有机骨架的了解较少。决定获得结晶的,明确定义的镁和钙固体的挑战的因素在于大的金属直径,缺乏能直接利用金属的能动性的d轨道来指导金属几何形状以及金属-配体键的整体弱点。该项目的重要部分与开发合适的反应条件有关,以获得反应产物的X射线质量晶体,以便对新化合物进行结构解析。采用了多种方法来帮助晶体生长,包括水热法和凝胶结晶法。我们已经使用了具有不同数目的磷氧原子的次膦酸酯和膦酸酯配体以及具有不同接头长度的二膦酸酯来确定它们对整体结构特征的影响。当我们从次膦酸发展到亚磷酸时,在产物的尺寸与配体中供体氧原子数目的增加之间观察到有趣的相关性。例如,单膦酸酯配体仅生成一维化合物,而膦酸酯则以一维和二维化合物的形式结晶,而基于二膦酸酯和三膦酸酯的化合物则显示出二维或三维几何形状。具有一维几何形状的镁化合物,如次膦酸钙代表的新型镁和柱状膦酸钙二维薄片。这些新型化合物的制备导致建立合成方案,该方案允许直接制备具有确定结构特征的化合物。

著录项

  • 作者

    Bampoh, Victoria Naa Kwale.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Chemistry General.;Chemistry Inorganic.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 219 p.
  • 总页数 219
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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