首页> 外文学位 >Development of new chemistry for a dual use hydrazine thruster switchable room temperature ionic liquids a study of silane grafting to model polyethylene compounds synthesis of the novel hydrazine replacement fuel molecules 1,1-dimethyl-2-[2-azidoethyl]hydrazine and 1,1-dimethyl-2-[2-azidoethyl]hydrazone .
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Development of new chemistry for a dual use hydrazine thruster switchable room temperature ionic liquids a study of silane grafting to model polyethylene compounds synthesis of the novel hydrazine replacement fuel molecules 1,1-dimethyl-2-[2-azidoethyl]hydrazine and 1,1-dimethyl-2-[2-azidoethyl]hydrazone .

机译:两用肼推进器可切换室温离子液体的新化学研究进展,研究硅烷接枝模拟聚乙烯化合物合成新型肼替代燃料分子1,1-二甲基-2- [2-叠氮基乙基]肼和1,1的研究-二甲基-2- [2-叠氮基乙基] hydr。

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摘要

This thesis focuses on the development of new compounds or new processes that are more environmentally friendly and economical than those currently in use. The decomposition of hydrazine, a well established liquid rocket fuel for both the aerospace and defense industries, to the product ammonia is studied. Control of this reaction will allow hydrazine to be used as a propellant for both chemical and electric propulsion. From this a dual stage thruster will be developed that will be more efficient than current systems decreasing the amount of propellant needed and allowing for either a larger mission payload or a longer duration of individual missions. Hydrazine, while beneficial and well established, is also highly toxic, so other work in this thesis focuses on the synthesis of the novel molecule 1,1-dimethyl-2-[2-azidoethyl]hydrazine or DMAEH and its hydrazone intermediate 1,1-dimethyl-2-[2-azidoethyl]hydrazone or De-DMAEH as less toxic hydrazine replacements.;Novel "switchable" solvents have been investigated in this research. These are solvents that can change from molecular liquids to ionic liquids and back, simply with the addition or removal of CO2 from the system. They can be used for a variety of applications, including as solvents for a reaction and separation system. Due to the recyclable nature of these solvents, waste is decreased making their development and implementation both environmentally and economically beneficial. Finally, the grafting reaction of vinyl silanes onto a hydrocarbon backbone is investigated. Fundamental work is being performed to study the graft distribution, selectivity and mechanism by which this reaction occurs. A more thorough understanding of how this reaction proceeds will allow for the development of a more efficient industrial process.
机译:本文的重点是开发比目前使用的更环保,更经济的新化合物或新工艺。研究了肼的分解,后者是航空航天和国防工业中成熟的液体火箭燃料,可分解为氨。控制该反应将使肼可用作化学和电推进的推进剂。以此为基础,将开发出一种双级推进器,它将比当前的系统效率更高,从而减少了所需的推进剂数量,并允许更大的任务有效载荷或更长的单个任务持续时间。肼虽然有益且建立良好,但毒性也很高,因此,本文的其他工作着眼于新型分子1,1-二甲基-2- [2-叠氮基乙基]肼或DMAEH及其its中间体1,1的合成-二甲基-2- [2-叠氮基乙基] hydr或De-DMAEH作为毒性较小的肼替代品;该研究已对新型“可转换”溶剂进行了研究。这些溶剂可以简单地通过从系统中添加或去除CO2的方式,从分子液体变为离子液体,然后再变为离子液体。它们可用于多种应用,包括作为反应和分离系统的溶剂。由于这些溶剂具有可回收利用的性质,因此减少了废物,使它们的开发和实施在环境和经济方面均受益。最后,研究了乙烯基硅烷在烃主链上的接枝反应。正在开展基础工作来研究这种反应发生的接枝分布,选择性和机理。对这种反应如何进行的更透彻的理解将有助于发展更有效的工业过程。

著录项

  • 作者

    Huttenhower, Hilary Anne.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 331 p.
  • 总页数 331
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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