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纳升级 NMR 光谱法在单次非等温流动实验中确定动力学参数。

Determination of Kinetic Parameters within a Single Nonisothermal On-Flow Experiment by Nanoliter NMR Spectroscopy.

机构信息

Instituto Regional de Investigación Cientifica Aplicada , Campus Universitario, Avenida Camilo José Cela s/n, 13071 Ciudad Real, Spain.

Escuela Técnica Superior de Ingenieros (ETSI) Industriales, Universidad de Castilla-La Mancha , Avenida Camilo José Cela s/n, 13071 Ciudad Real, Spain.

出版信息

Anal Chem. 2015 Oct 20;87(20):10547-55. doi: 10.1021/acs.analchem.5b02811. Epub 2015 Oct 2.

Abstract

Conventional methods to determine the kinetic parameters for a certain reaction require multiple, separate isothermal experiments, resulting in time- and material-consuming processes. Here, an approach to determine the kinetic information within a single nonisothermal on-flow experiment is presented, consuming less than 10 μmol of reagents and having a total measuring time of typically 10 min. This approach makes use of a microfluidic NMR chip hyphenated to a continuous-flow microreactor and is based on the capabilities of the NMR chip to analyze subnanomole quantities of material in the 25 nL detection volume. Importantly, useful data are acquired from the microreactor platform in specific isothermal and nonisothermal frames. A model fitting the experimental data enables rapid determination of kinetic parameters, as demonstrated for a library of isoxazole and pyrazole derivatives.

摘要

传统的方法来确定动力学参数的某一反应需要多个、独立的等温实验,导致耗时和材料消耗的过程。在这里,一种方法来确定动力学信息在一个单一的非等温流动实验,消耗小于 10 μmol 的试剂和总测量时间通常为 10 分钟。这种方法利用微流控 NMR 芯片与连续流微反应器联用,并基于 NMR 芯片在 25 nL 检测体积中分析亚纳摩尔数量的材料的能力。重要的是,从微反应器平台获得有用的数据在特定的等温及非等温条件下。模型拟合实验数据可以快速确定动力学参数,为异恶唑和吡唑衍生物库进行了演示。

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