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Polyhedral Boranes: A Versatile Building Block for Nanoporous Materials.

机译:多面硼烷:纳米多孔材料的多功能构建基块。

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摘要

The studies described in this dissertation examine several new concepts related to polyhedral boranes and their applications towards the synthesis of novel nanoporous materials. The unique thermal and chemical robustness, rigidity, quasi-spherical geometry, and high boron content of polyhedral boranes are explored to generate materials not possible with typical organic synthons. Aside from the fundamental synthetic work, this work was also aimed at solving larger global issues such as energy storage and new routes to therapeutics. Chapter 2 highlights the discovery of the first highly porous carborane-based metal-organic framework, where the spherical nature of the carborane increases volumetric surface area without reducing pore volume. Chapter 3 examines the first tritopic carborane-based ligand and the stabilizing effect the rigid, sterically bulky carboranyl groups have on highly porous topologies not stable with typical organic ligands. Chapters 4 and 5 describe the use of polyhedral borane-based ligands as a means to influence and generate unexpected topologies. Lastly, chapter 6 explores using a simple carborane-based ligand that harnesses the power of coordination-driven assembly to rapidly generate a high boron-containing supramolecular cuboctahedron.
机译:本论文描述的研究探讨了与多面体硼烷有关的几个新概念及其在合成新型纳米多孔材料中的应用。研究了独特的热化学稳定性,刚性,准球形几何形状和多面体硼烷的高硼含量,以生成典型的有机合成子无法实现的材料。除了基本的合成工作外,这项工作还旨在解决更大的全球性问题,例如能量存储和治疗新途径。第2章重点介绍了第一个高度多孔的基于碳硼烷的金属有机骨架的发现,其中碳硼烷的球形性质在不减少孔体积的情况下增加了体积表面积。第3章研究了第一个基于三位碳硼烷的配体,以及刚性,空间体积大的碳硼烷基对高度多孔的拓扑结构的稳定作用,这些拓扑结构无法用典型的有机配体稳定。第4章和第5章介绍了使用多面体硼烷基配体作为影响和生成意外拓扑的方法。最后,第6章探讨了使用简单的基于碳硼烷的配体,该配体利用了配位驱动组装的能力来快速生成高硼含量的超分子立方八面体。

著录项

  • 作者

    Clingerman, Daniel Jon.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Chemistry Inorganic.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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