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Two decades of high temperature gas chromatography (1983-2003): what's next?

机译:二十年高温气相色谱法(1983年至2003年):下一步是什么?

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The evolution of the concept of High Temperature High Resolution Gas Chromatography (HT-HRGC) is presented together with examples highlighting its potentialities. The range of molecular weight and number of functional groups present in the molecules elating at higher temperature, far exceeds (Kovats Indices of 120) the usual HRGC range for analytes (Kovats Indices of 40-45). With usual column lengths and film thickness, this will already extend the range of analytes by 400 Da. Short, thin film columns would acme another 500 Da to the molecular weight window traditionally dealt with by HRGC.This range (similar to700-1500 Da) can be surpassed by molecules presenting peculiar structures, the ceiling being similar to5000 Da. It is currently tackled only for peptides, oligosaccharides and a few polymers, by conventional analytical techniques. However, higher molecular weight analogues of all other organic species and yet unknown carbon skeletons have been neglected because this range was only poorly accessible to usual analytical techniques dealing with complex mistures. (C) 2004 Elsevier B.V. All rights reserved.
机译:介绍了高温高分辨率气相色谱(HT-HRGC)概念的演变,并举例说明了其潜力。存在于较高温度下的分子中存在的分子量和官能团数的范围,远远超出了分析物通常的HRGC范围(Kovats指数为40-45)(Kovats指数为120)。使用通常的色谱柱长度和膜厚,这将使分析物范围扩大400 Da。短而薄的薄膜色谱柱会比HRGC传统处理的分子量窗口高出500 Da,而具有独特结构的分子可以超过该范围(约700-1500 Da),上限类似于5000 Da。目前,通过常规分析技术只能解决肽,寡糖和一些聚合物的问题。但是,所有其他有机物种的更高分子量类似物和未知的碳骨架都被忽略了,因为处理复杂杂物的常规分析技术仅很难接近该范围。 (C)2004 Elsevier B.V.保留所有权利。

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