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Spontaneous and nonphotochemical laser-induced nucleation in levitated supersaturated microdroplets.

机译:悬浮过饱和微滴中自发和非光化学激光诱导的成核作用。

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摘要

Research of nucleation in levitated supersaturated microdroplets was conducted in this dissertation. An unconventional crystallization system, levitated microdroplets, was utilized in this research. The microdroplet was levitated by an electrodynamic balance (EDB) constructed inside a vacuum chamber. EDB has the advantage of creating a containerless environment for the crystallization system. Spontaneous nucleation in levitated microdroplets was investigated. Spontaneous nucleation of aqueous microdroplets was caused by reducing the ambient relative humidity (RH) surrounding the solution droplets. Different polymorphs of glutaric acid and malonic acid are nucleated in levitated microdroplets when injected into a chamber maintained at different initial RH values. Effect of surfactant as additive is also investigated. A site-dependent evaporation-driven crystallization theory is established to explain the spontaneous nucleation phenomena in levitated aqueous microdroplets. Levitated microdroplets containing a solute and an organic solvent were also investigated. The crystallization behavior of glutaric acid methanol solutions and ethanol solutions was observed. ROY, a deca-polymorphic compound, was also studied from its DMSO solution microdroplets. Non-photochemical laser induced nucleation (NPLIN) was observed in levitated microdroplets of supersaturated potassium chloride (KCl) aqueous solution. A focused green (532 nm) pulsed laser with 1 ns pulse width was used to induce nucleation. Nucleation of levitated KCl microdroplet with high supersaturation was observed upon laser irradiation. A laser-induced charge loss phenomenon was also observed. A hypothesis of laser-induced electrostriction and corona discharge is discussed. Analysis with classical nucleation theory suggests that the NPLIN results in levitated microdroplets are consistent with previously published data on bulk samples.
机译:本文对悬浮过饱和微滴的成核研究进行了研究。这项研究使用了非常规的结晶系统,悬浮的微滴。通过在真空室内构建的电动天平(EDB)使微滴悬浮。 EDB具有为结晶系统创建无容器环境的优势。研究了悬浮微滴的自发成核。水性微滴的自发成核是通过降低溶液微滴周围的环境相对湿度(RH)引起的。当将戊二酸和丙二酸的不同多晶型物注入保持在不同初始RH值的腔室时,在悬浮的微滴中成核。还研究了表面活性剂作为添加剂的作用。建立了基于位点的蒸发驱动结晶理论来解释悬浮水微滴中的自发成核现象。还研究了含有溶质和有机溶剂的悬浮微滴。观察到戊二酸甲醇溶液和乙醇溶液的结晶行为。还从其DMSO溶液微滴研究了十进制多态化合物ROY。在过饱和氯化钾(KCl)水溶液的悬浮微滴中观察到非光化学激光诱导的成核(NPLIN)。使用脉冲宽度为1 ns的聚焦绿色(532 nm)脉冲激光诱导成核。激光辐照观察到具有高过饱和度的悬浮KCl微滴成核。还观察到激光引起的电荷损失现象。讨论了激光诱导电致伸缩和电晕放电的假设。用经典成核理论进行的分析表明,悬浮的微滴中的NPLIN结果与先前公布的大样本数据一致。

著录项

  • 作者

    Fang, Ke.;

  • 作者单位

    Polytechnic Institute of New York University.;

  • 授予单位 Polytechnic Institute of New York University.;
  • 学科 Engineering Materials Science.;Chemistry General.;Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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