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The Use of Carboranes in Electrolyte Design and Ligand Development

机译:碳硼烷在电解质设计和配体开发中的用途

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摘要

The discovery of polyhedral boranes in the early 1900's by Alfred Stock and coworkers opened the door to an entirely new realm of structural chemistry. Boron's rather unique property of catenation, the ability to build molecules of unlimited size by covalently bonding to itself, has been exploited to develop the field of polyhedral borane chemistry. In 1960 the first icosahedral carborane was synthesized, B12H12 2- dianion, by Pitochelli and Hawthorne. Aside from the interesting structure and bonding of the cluster it was found to be incredibly thermally stable, withstanding heats above 800 °C, and chemically inert to almost all reagents. These properties have led to the B12H12 2- being called the most stable molecule known. The isoelectronic analogues of this structure where one or more BH has been replaced by a CH + are known as carboranes. The first of this family was prepared in the industrial setting in the 1950's but went unreported until 1963. The post-World War II government programs (ZIP and HEF) were purposed with developing borane-based rocket fuel that would utilize the higher energies generated by the combustion of boron hydrides in contrast to hydrocarbons. In 1957 ortho-carborane, 1,2-C2B10H 12 was isolated by Reaction Motors Inc, however this ground-breaking work on the o-carborane wasn't published until 1963 when the groups at Thiokol and Olin-Mathieson released a series of papers. Years later, the monoanionic cluster HCB11H11 1- was synthesized by Knoth in 1967. The related closed 10-vertex anion HCB9H91- was also prepared by Knoth in 1971 and displays many of the same characteristics as the 12-vertex mono-anion. These monoanionic closed cluster carboranes have found application most notably as weakly coordinating anions but are also used in medicine, material science, electrochemistry, and transition metal catalysis. It is these monoanionic carborane clusters that will be the primary focus of this thesis.;A major part of this work is directed at functionalizing these carborane clusters and incorporating them into imidazolium salts. The imidazoliums bearing functionalized carboranes can then converted into the corresponding N-heterocyclic carbenes (NHC) to be used as ligands for transition metal complexes. This thesis will also contain work in the area of electrolyte development exploiting the weakly coordinating nature of the carborane anion. Both the 10- and 12-vertex carborane clusters can be paired with various cations for their implementation in secondary batteries. Magnesium electrolytes were developed and tested in collaboration with the Guo lab at UC Riverside. Solid-state electrolytes were also developed for various cations and tested by our collaborators at Sandia National Laboratory, Argonne National Laboratory, and the Jet Propulsion Laboratory.
机译:1900年代初期,阿尔弗雷德·斯托克(Alfred Stock)和同事发现了多面体硼烷,这为结构化学的全新领域打开了大门。硼具有相当独特的级联性质,即通过与自身共价键合而构建大小不限的分子的能力,已被用于开发多面体硼烷化学领域。 1960年,皮托切利(Pitochelli)和霍桑(Hawthorne)合成了第一个二十面体碳硼烷,B12H12 2-二价阴离子。除了有趣的结构和簇的键合以外,还发现它具有极高的热稳定性,可承受800°C以上的高温,并且对几乎所有试剂都呈化学惰性。这些特性导致B12H12 2-被称为已知的最稳定的分子。其中一个或多个BH已被CH +取代的这种结构的等电子类似物称为碳硼烷。该系列中的第一个是在1950年代的工业环境中制备的,但直到1963年才被报道。第二次世界大战后的政府计划(ZIP和HEF)旨在开发基于硼烷的火箭燃料,该燃料将利用由硼烷产生的更高能量。与碳氢化合物相比,氢化硼的燃烧。 1957年,邻甲碳烷被反应汽车公司(React Motors Inc.)分离出来,但是直到1963年Thiokol和Olin-Mathieson的研究小组发表了一系列论文后,关于邻甲碳烷的这项开创性工作才发表。 。数年后,Knoth于1967年合成了单阴离子簇HCB11H11 1-。Knoth于1971年也制备了相关的封闭10顶点阴离子HCB9H91-,它具有许多与12顶点单阴离子相同的特性。已发现这些单阴离子闭合簇碳硼烷最显着地用作弱配位阴离子,但也用于医学,材料科学,电化学和过渡金属催化。这些单阴离子碳硼烷簇将成为本论文的主要重点。这项工作的主要部分是针对功能化这些碳硼烷簇并将其并入咪唑鎓盐中。然后可以将带有官能化碳硼烷的咪唑鎓盐转化为相应的N-杂环卡宾(NHC),用作过渡金属配合物的配体。该论文还将利用碳硼烷阴离子的弱配位性质来从事电解质开发领域的工作。 10和12顶点碳硼烷簇都可以与各种阳离子配对,以在二次电池中实现。镁电解液是与UC Riverside的Guo实验室合作开发和测试的。还开发了用于各种阳离子的固态电解质,并由桑迪亚国家实验室,阿贡国家实验室和喷气推进实验室的合作伙伴进行了测试。

著录项

  • 作者

    McArthur, Scott George.;

  • 作者单位

    University of California, Riverside.;

  • 授予单位 University of California, Riverside.;
  • 学科 Inorganic chemistry.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:15

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