首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Size-exclusion chromatography with evaporative light scattering detection: Method for determination of polydimethylsiloxanes - I. Testing dependence of molecular weight of polydimethylsiloxanes and injected mass upon the detector signal
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Size-exclusion chromatography with evaporative light scattering detection: Method for determination of polydimethylsiloxanes - I. Testing dependence of molecular weight of polydimethylsiloxanes and injected mass upon the detector signal

机译:具有蒸发光散射检测的尺寸排阻色谱法:聚二甲基硅氧烷的测定方法-I.检测聚二甲基硅氧烷的分子量和注入质量对检测器信号的依赖性

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In recent years the evaporative light scattering detector has become a promising device in the analysis of variable chemical compounds using liquid chromatography. Due to the detection specificity, based on the scattering of the laser light on non-volatile analyte particles, this detector is considered a most universal one. Many authors consider detector signal as a mass signal and subsequently, evaporative light scattering detector has been regarded as a mass detector. Although the scientists pinpoint to many advantages of this device, many of its drawbacks were also noticed. Due to variable examinations carried out some scientist characterised the detector response as a non-linear, seeing in fact a significant limitation of this detector for the purposes of quantitative tests. The author of the present study researched, in many ways, for the solution to this problem, by carrying out tests on polydimethylsiloxanes (PDMS) of a linear structure. The aim of this study was to test the dependence of the evaporative light scattering detector signal upon the molecular weight of PDMS of a linear structure and viscosity ranging from 10 to 60 000 cSt and the injected mass. The evaluation of function monotonicity of the detector response and determination of the function for particular analytes referred to the mass ranges of 8.9-149.0 mu g. In order to find the dependence of the integrated signal value of the detector signal intensity, expressed as a surface area in jig, upon analyte mass for particular PDMS, several analytical functions and formulas were used. Parameters of regression equations were calculated for linear and non-linear functions as well as their logarithmic transformations. The aim of the research for the optimal regression equation could mean increased reliability of results obtained from analyses of PDMS. (c) 2008 Elsevier B.V. All rights reserved.
机译:近年来,蒸发光散射检测器已成为使用液相色谱法分析各种化学化合物的有前途的设备。由于检测的特异性,基于激光在非挥发性分析物颗粒上的散射,该检测器被认为是最通用的检测器。许多作者将检测器信号视为质量信号,随后,蒸发光散射检测器被视为质量检测器。尽管科学家们指出了该设备的许多优点,但也注意到了它的许多缺点。由于进行了可变检查,一些科学家将检测器的响应描述为非线性,实际上,出于定量测试的目的,发现该检测器存在明显的局限性。本研究的作者通过对线性结构的聚二甲基硅氧烷(PDMS)进行测试,以多种方式研究了该问题的解决方案。这项研究的目的是测试蒸发光散射检测器信号对线性结构PDMS分子量和粘度范围为10至60 000 cSt的PDMS以及注入质量的依赖性。对检测器响应的功能单调性的评估以及对特定分析物的功能的确定涉及的质量范围为8.9-149.0 g。为了找到检测器信号强度的积分信号值(以夹具的表面积表示)对特定PDMS的分析物质量的依赖性,使用了几种分析函数和公式。计算线性和非线性函数及其对数转换的回归方程参数。最佳回归方程的研究目的可能意味着从PDMS分析获得的结果的可靠性提高。 (c)2008 Elsevier B.V.保留所有权利。

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