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A New Generation of Chirped Pulse Rotational Spectroscopy with Applications to Structure Determination and Astrochemistry.

机译:新一代of脉冲旋转光谱技术在结构测定和天化学中的应用。

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摘要

Chirped-pulse rotational spectroscopy is emerging as a powerful technique for molecular detection and characterization. Using this broadband technique, a multi-component mixture can be quantitatively analyzed quickly, and the unique characteristics of rotational spectroscopy allow for the structural determination of all of the species in the sample. In the past few years, instrumental upgrades have made a qualitatively new class of problems accessible to chirped-pulse rotational spectroscopy. The instrumental improvements made in our laboratory in the past few years, along with techniques to aid in the assignment and characterization of complex spectra, are described.;The new capabilities of this spectrometer are applied to two types of problems. The first is in the direct structure determination of large molecules and molecular clusters through the measurement of isotopically labeled species, particularly in the size regime (>10 non-hydrogen atoms) where weak interactions play a crucial role in overall structure, and where electronic structure theory begins to struggle in accurately capturing the effects of various competing forces. The second application is to astrochemistry, where broadband spectroscopic techniques are needed to partner with broadband radio astronomical facilities in understanding the complex chemistry that occurs in the interstellar medium. This thesis will also describe ways in which the principles of chirped-pulse spectroscopy can be applied in the millimeter and submillimeter regions, which open up a variety of both research and commercial applications.
机译:rp脉冲旋转光谱法正在成为一种强大的分子检测和表征技术。使用这种宽带技术,可以快速地对多组分混合物进行定量分析,并且旋转光谱的独特特征允许对样品中所有物质进行结构测定。在过去的几年中,仪器的升级已经使chi脉冲旋转光谱学在质量上达到了新的一类。描述了我们实验室在过去几年中进行的仪器改进,以及有助于复杂光谱的分配和表征的技术。该光谱仪的新功能适用于两种类型的问题。首先是通过测量同位素标记的物种来直接确定大分子和分子簇的结构,尤其是在尺寸范围(> 10个非氢原子)中,弱相互作用在整体结构中起着至关重要的作用,在电子结构中理论开始努力准确地捕捉各种竞争力量的影响。第二个应用是在天化学中,需要宽带光谱技术与宽带射电天文设施合作,以了解星际介质中发生的复杂化学反应。本文还将描述chi脉冲光谱原理可应用于毫米和亚毫米区域的方法,这将打开各种研究和商业应用领域。

著录项

  • 作者

    Neill, Justin Lindsay.;

  • 作者单位

    University of Virginia.;

  • 授予单位 University of Virginia.;
  • 学科 Chemistry Physical.;Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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