Zhao Chen-Xi, Zhang Ting, Liang Yi-Zeng, Yuan Da-Lin, Zeng Ying-Xu, Xu Qing-Song
Department of Biological Engineering and Environmental Science, Changsha University, Changsha 410003, China.
J Chromatogr A. 2007 Mar 16;1144(2):245-54. doi: 10.1016/j.chroma.2007.01.040. Epub 2007 Jan 17.
In order to make programmed-temperature retention index (PTRI) data be shared by other chromatographers and laboratories, conversion of PTRI from one set of experimental conditions to another is investigated in detail in this work. It was found that the differences between the PTRIs at different heating rates are structurally dependent, especially the number of ring in molecules. Thus, with the help of molecule constitutional descriptors, equations of PTRI conversion to certain initial temperature, heating rate, and stationary phase were obtained with high correlation coefficients and low standard deviations. Calculation errors of PTRI conversion between different heating rates and between different initial temperatures were from 1.1 to 2.9 retention index units (i.u.), which is in the same order with experiment errors. It is well known that reproducibility of PTRI on a polar column is not as good as that on an apolar column because of the apolarity of the n-alkane homologues. Thus, topological descriptors were used for PTRI conversion between two columns with different polar stationary phases, giving better results than those obtained by constitutional descriptors. This shows that topological descriptors could provide more molecular structural information than constitutional descriptors. However, as constitutional descriptor has the advantages of clear physical meaning and very simple calculation, it is our first selection when the PTRI calculation accuracy is satisfied. The method developed is simple in calculation, easy to be performed with high accuracy.
为使程序升温保留指数(PTRI)数据能被其他色谱工作者和实验室共享,本文详细研究了PTRI在不同实验条件之间的转换。研究发现,不同升温速率下的PTRI差异与分子结构有关,尤其是分子中的环数。因此,借助分子结构描述符,得到了PTRI转换至特定初始温度、升温速率和固定相的方程,相关系数高且标准差低。不同升温速率之间以及不同初始温度之间的PTRI转换计算误差为1.1至2.9个保留指数单位(i.u.),与实验误差处于同一量级。众所周知,由于正构烷烃同系物的非极性,PTRI在极性柱上的重现性不如在非极性柱上。因此,使用拓扑描述符进行不同极性固定相柱之间的PTRI转换,结果优于结构描述符。这表明拓扑描述符比结构描述符能提供更多分子结构信息。然而,由于结构描述符具有物理意义明确、计算非常简单的优点,在满足PTRI计算精度要求时,它是我们的首选。所开发的方法计算简单,易于高精度执行。