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Thermal Field-Flow Fractionation with Quintuple Detection for the Comprehensive Analysis of Complex Polymers

机译:热场流量分馏,具有Quintuple检测综合分析复合聚合物

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摘要

With a constantly increasing complexity of macro-molecular structures, advanced polymer analysis faces new challenges with regard to the comprehensive analysis of these structures. Today it goes without saying that comprehensive polymer analysis requires selective and robust fractionation methods in combination with a set of information-rich detectors. Thermal field-flow fractionation (ThFFF) has proven to be a powerful technique for the fractionation of complex polymers as well as polymer assemblies. In the present study, ThFFF is coupled to a set of five detectors to simultaneously provide quantitative information on a number of important molecular parameters, including molar mass, molecular size, chemical composition, molecular topology, intrinsic viscosity, and normal and thermal diffusion coefficients. The five-detector setup includes a triple detector device (multiangle light scattering (MALS), differential refractive index (dRI), and differential viscometer (dVis)) that is coupled to an ultraviolet (UV) detector for dual concentration detection and an online dynamic light scattering (DLS) detector. Triple detection consisting of MALS, dRI, and dVis provides information on molar mass, molecular size, and molecular topology. Dual concentration detection offers compositional analysis from a combination of UV and dRI detectors, whereas DLS provides information on diffusion coefficients and hydrodynamic radii. The power of this novel quintuple detector ThFFF (ThFFF-QD) is documented for three important fields of application, namely, the comprehensive analysis of (1) linear and star-shaped polymers, (2) hydrogenated and deuterated polymers, and (3) block copolymer self-assemblies. These applications highlight the novel approach of determining the most relevant molecular parameters, including Mark-Houwink and conformation plots, simultaneously in a single experiment.
机译:随着宏观分子结构的不断增加的复杂性,高级聚合物分析面临着对这些结构的综合分析方面的新挑战。今天,不言而喻,综合聚合物分析需要与一组信息丰富的探测器组合选择性和鲁棒分级方法。热场 - 流分馏(ThFFF)已被证明是一种强大的技术,用于复合聚合物的分馏以及聚合物组件。在本研究中,ThFFF耦合到一组五种探测器,以同时提供关于许多重要分子参数的定量信息,包括摩尔质量,分子尺寸,化学成分,分子拓扑,特性粘度和正常和热扩散系数。五检测器设置包括三维探测器装置(多元光散射(MAL),差分折射率(DRI)和差分粘度计(DVIS),其耦合到用于双浓度检测和在线动态的紫外线(UV)检测器光散射(DLS)探测器。由MALS,DRI和DVI组成的三倍检测提供有关摩尔质量,分子大小和分子拓扑的信息。双浓度检测从UV和DRI探测器的组合提供了组成分析,而DLS提供关于扩散系数和流体动力学半径的信息。这部小型Quintuple探测器ThFFF(Thfff-QD)的力量被记录在三个重要的应用领域,即(1)线性和星形聚合物的综合分析,(2)氢化和氘代聚合物,和(3)嵌段共聚物自组装。这些应用突出了确定最相关分子参数的新方法,包括标记 - Houwink和构象图,同时在单一的实验中同时。

著录项

  • 来源
    《Analytical chemistry》 |2019年第10期|共8页
  • 作者

    Muza Upenyu L.; Pasch Harald;

  • 作者单位

    Univ Stellenbosch Dept Chem &

    Polymer Sci ZA-7602 Stellenbosch South Africa;

    Univ Stellenbosch Dept Chem &

    Polymer Sci ZA-7602 Stellenbosch South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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