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Capillary electrophoresis-high resolution inductively coupled plasma mass spectrometry: Elemental speciation and applications in pharmaceutical process research.

机译:毛细管电泳-高分辨率电感耦合等离子体质谱法:元素形态及其在制药工艺研究中的应用。

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摘要

The high efficiency of capillary electrophoresis (CE) was combined with the element specificity and low detection limits of high resolution inductively coupled plasma mass spectrometry (HR-ICP-MS) for rapid elemental speciation. A novel sheath flow interface coupled to a PFA Teflon micro-flow concentric nebulizer was developed to provide an efficient method for interfacing capillary electrophoresis with the inductively coupled plasma. The sheath interface provides control over the nebulizer induced laminar flow in the separation capillary allowing the tradeoff between separation efficiency and analysis time to be selected.;In chapter 3, this CE-HR-ICP-MS system was used to study various hydration/hydrolysis processes of hexachloro complexes of Rh in aqueous solutions. The migration speed of various mixed aquo/chloro rhodium species through the capillary depends on the charges they carry, which is dictated by the solution pH as well as their aging period in the solution. Several Rh species were tentatively identified according to their relative mobilities and their equilibrium distributions were quantified using peak area calculation in the experiments.;In chapter 4, to meet the need of speciation analysis for applications in pharmaceutical process research, a non-aqueous CE with HR-ICP-MS detection method was developed. The novel sheath interface between the CE and ICP-MS enabled the use of CE with up to 100% organic electrolyte without organic loading in the plasma. Two unique aspects of non-aqueous CE, non-aqueous CE with wide-bore capillaries and influence of organic solvent on the CE separation selectivity were discussed.;Information on chemical speciation is much needed in mechanistic and kinetic studies on catalyst formation processes in pharmaceutical research. In chapter 5, nonaqueous CE-ICP-MS speciation analysis was applied to the identification and quantification of various rhodium species involved in a ligand exchange process leading to formation of catalyst dirhodium(II) tetrakis[methyl 2-oxopyrrolidin-5(S)-carboxylate]. A variety of reaction intermediates were identified and quantified along the pathway to formation of the desired product. This has provided new insights into the mechanism and kinetics of the reaction.;In chapter 6, the feasibility of the determination of sub ppm to percentage levels of halogen elements (fluorine, chlorine, bromine, and iodine) in solid organic compounds and drug substances by HR-ICP-MS was investigated. In chapter 7, the application of HR-ICP-MS for the determination of isotopic composition of enriched stable isotope calcium samples is described. The interferences from 40Ar isotope at the calcium mass 40 are greatly minimized by operating the ICP-MS in the cool plasma mode. The rest polyatomic ions are overcome by high resolution mode of the ICP-MS.
机译:毛细管电泳(CE)的高效率与高分辨率的电感耦合等离子体质谱(HR-ICP-MS)的元素特异性和低检测限相结合,可用于快速元素形成。开发了一种新型的与PFA铁氟龙微流同心雾化器耦合的鞘流界面,为毛细管电泳与感应耦合等离子体的接口提供了一种有效的方法。鞘管接口可控制雾化器在分离毛细管中产生的层流,从而可以在分离效率和分析时间之间进行权衡选择。在第3章中,此CE-HR-ICP-MS系统用于研究各种水合/水解水溶液中Rh的六氯配合物的合成过程。各种混合的水/氯铑物种通过毛细管的迁移速度取决于它们携带的电荷,这由溶液的pH值以及它们在溶液中的老化时间决定。根据相对迁移率初步确定了几种Rh种类,并在实验中使用峰面积计算定量了它们的平衡分布。第四章,为满足形态分析在制药工艺研究中的应用需要,一种非水CE开发了HR-ICP-MS检测方法。 CE和ICP-MS之间新颖的护套界面使CE可以与高达100%的有机电解质一起使用,而等离子体中没有有机负载。讨论了非水CE,具有宽毛细管的非水CE以及有机溶剂对CE分离选择性的影响的两个独特方面。;在药物催化剂形成过程的机理和动力学研究中,非常需要化学形态信息研究。在第5章中,非水CE-ICP-MS形态分析用于鉴定和定量参与配体交换过程中导致催化剂四(甲基)2- [甲基-2-氧吡咯烷酮-5(S)-羧酸盐]。沿着形成所需产物的途径鉴定并定量了多种反应中间体。这为反应的机理和动力学提供了新的见识。在第6章中,测定固体有机化合物和原料药中卤素元素(氟,氯,溴和碘)的百分含量以下ppm的可行性的确定通过HR-ICP-MS进行了研究。在第7章中,介绍了HR-ICP-MS在测定稳定同位素富钙样品的同位素组成中的应用。通过在冷等离子体模式下运行ICP-MS,可以最大程度地降低40Ar同位素对钙质40的干扰。 ICP-MS的高分辨率模式可克服其余的多原子离子。

著录项

  • 作者

    Bu, Xiaodong.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 292 p.
  • 总页数 292
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:49

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