Firmenich SA, Corporate R&D Division, PO Box 239, 1211 Geneva 8, Switzerland.
Anal Chem. 2010 Aug 1;82(15):6457-62.
In a previous report, we validated the use of a database that compiled the relative response factors of flavor and fragrance compounds under standard GC conditions for a flame ionization detector. Here we investigate the prediction of unknown response factors from the molecular structure by using combustion enthalpies. In a first step, this enthalpy was well-predicted with either ab initio calculation or multiple linear regression based on the molecular formula. In a second step, good correlation was observed between these combustion enthalpies and experimental relative response factors, and so the response factors were predictable from only the molecular formula. With a database of 351 compounds, about 60% of them exhibited a difference of less than 5% between the predicted and experimental relative response factors and about 80% exhibited a difference of less than 10%.
在之前的报告中,我们验证了使用数据库的方法,该数据库编译了在火焰离子化检测器的标准 GC 条件下风味和香料化合物的相对响应因子。在这里,我们通过燃烧焓来研究从分子结构预测未知响应因子的方法。在第一步中,通过从头计算或基于分子公式的多元线性回归可以很好地预测该焓。在第二步中,观察到这些燃烧焓与实验相对响应因子之间存在良好的相关性,因此可以仅从分子公式预测响应因子。在包含 351 种化合物的数据库中,约 60%的化合物的预测相对响应因子与实验值之间的差异小于 5%,约 80%的化合物的差异小于 10%。