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水动力色谱法。

Hydrodynamic chromatography.

机构信息

Analytical Chemistry Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.

出版信息

Annu Rev Anal Chem (Palo Alto Calif). 2012;5:15-34. doi: 10.1146/annurev-anchem-062011-143107.

Abstract

Hydrodynamic chromatography (HDC) has experienced a resurgence in recent years for particle and polymer characterization, principally because of its coupling to a multiplicity of physical detection methods. When coupled to light scattering (both multiangle static and quasi-elastic), viscometric, and refractometric detectors, HDC can determine the molar mass, size, shape, and structure of colloidal analytes continuously and as a function of one another, all in a single analysis. In so doing, it exposes the analytes to less shear force (and, hence, less potential for flow-induced degradation) than in, for instance, size-exclusion chromatography. In this review, we discuss the fundamental chromatographic underpinnings of this technique in terms of retention, band broadening, and resolution, and we describe the power of multidetector HDC with examples from the recent literature.

摘要

近年来,由于与多种物理检测方法的结合,水动力色谱(HDC)在颗粒和聚合物特性分析方面重新受到关注。当与光散射(多角度静态和准弹性)、黏度计和折射计检测器结合使用时,HDC 可以连续地、彼此作为函数地确定胶体分析物的摩尔质量、尺寸、形状和结构,所有这些都在一次分析中完成。这样,与例如尺寸排阻色谱相比,它使分析物受到的剪切力更小(因此,潜在的流动诱导降解也更小)。在这篇综述中,我们将根据保留、带宽展宽和分辨率来讨论该技术的基本色谱基础,并通过来自最新文献的示例描述多检测器 HDC 的强大功能。

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