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Novel studies on the formation and chemical reactivity of compound clusters and their precursors in the gas and liquid phase.

机译:关于化合物团簇及其前体在气相和液相中的形成和化学反应性的新研究。

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摘要

Presented are four separate and unique studies on molecular and nanoscale systems: Atmospheric hydration and aggregation of NaCl clusters, highly water-soluble aurous-thiolate oligomers, water-soluble gold clusters from aurous-thiolate oligomer precursors, and gold iodide clusters. Adsorption of water on cationic and anionic sodium chloride clusters is investigated to elucidate active sites of molecular interaction as well as primary aggregate formation kinetics. Considered an exceptionally abundant atmospheric species, experiments are conducted to further quantify gas phase chemistry and hydration/solvation of alkali halides. Currently the most soluble of all known gold-thiolates, para-mercaptobenzoic acid-based (pMBA) aurous-thiolate oligomers are investigated and physical and chemical properties quantified. Solubility, structural conformation, and poly-dispersity of higher homologs are observed with the goal of further applications in clusters research, medical and biomedical, and industry. Gold thiolate clusters, synthesized using pMBA-based oligomers, are investigated through reductive formation in solution. UV-VIS and UV-VIS-NIR spectroscopy is undertaken to assign structures based on predictions of the HOMO-LUMO gap and other electronic transitions. Gold iodide is investigated in relation to the common thiolate-halide analogy. Synthesis and characterization of a solid precursor as well as anion and cation cluster formation is presented as part of an ongoing collaboration.
机译:提出了关于分子和纳米级系统的四项单独且独特的研究:大气水合和NaCl团簇的聚集,高度水溶性的硫代硫醇盐低聚物,来自硫代硫醇盐低聚物前体的水溶性金簇和碘化金簇。研究了水在阳离子和阴离子氯化钠簇上的吸附,以阐明分子相互作用的活性位点以及主要的聚集体形成动力学。被认为是异常丰富的大气物种,进行了实验以进一步量化气相化学和碱金属卤化物的水合/溶剂化。目前,在所有已知的硫醇盐中溶解度最高的是对巯基苯甲酸基(pMBA)硫醇盐金低聚物,并对其理化性质进行了定量。观察到较高同系物的溶解度,结构构象和多分散性,目的是在聚类研究,医学和生物医学以及工业中进一步应用。通过在溶液中还原形成,研究了使用基于pMBA的低聚物合成的硫醇金簇。进行UV-VIS和UV-VIS-NIR光谱分析以根据HOMO-LUMO间隙和其他电子跃迁的预测分配结构。碘化金与普通的硫醇盐-卤化物类比有关。作为正在进行的合作的一部分,介绍了固体前体的合成和表征以及阴离子和阳离子簇的形成。

著录项

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Physical chemistry.;Molecular physics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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