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反应预测与红外光谱模拟相结合用于鉴定均三嗪类除草剂降解产物

A combined application of reaction prediction and infrared spectra simulation for the identification of degradation products of s-triazine herbicides.

作者信息

Kostka T, Selzer P, Gasteiger J

机构信息

Institute for Organic Chemistry, University of Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Chemistry. 2001 May 18;7(10):2254-60. doi: 10.1002/1521-3765(20010518)7:10<2254::aid-chem2254>3.0.co;2-#.

Abstract

Substance identification in analytical chemistry is usually performed by comparing an experimental spectrum with a reference spectrum. Especially in environmental chemistry, reference spectra from databases are only available for a limited number of compounds. The combination of the reaction prediction system EROS and of infrared spectra simulation is a powerful tool for computer-assisted substance identification. First, possible degradation products of a chemical are predicted and then the infrared spectra of all these compounds are simulated. Comparison of the simulated infrared spectra with experimental spectra allows one to identify the structure of compounds. The method is demonstrated with the example of s-triazine herbicides.

摘要

分析化学中的物质鉴定通常通过将实验光谱与参考光谱进行比较来完成。特别是在环境化学中,数据库中的参考光谱仅适用于有限数量的化合物。反应预测系统EROS与红外光谱模拟相结合是计算机辅助物质鉴定的有力工具。首先,预测一种化学品可能的降解产物,然后模拟所有这些化合物的红外光谱。将模拟的红外光谱与实验光谱进行比较,可以确定化合物的结构。以均三嗪类除草剂为例对该方法进行了说明。

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