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从超分子化学的滴定实验中确定络合常数。

Determining association constants from titration experiments in supramolecular chemistry.

机构信息

School of Chemistry, The University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Chem Soc Rev. 2011 Mar;40(3):1305-23. doi: 10.1039/c0cs00062k. Epub 2010 Dec 1.

Abstract

The most common approach for quantifying interactions in supramolecular chemistry is a titration of the guest to solution of the host, noting the changes in some physical property through NMR, UV-Vis, fluorescence or other techniques. Despite the apparent simplicity of this approach, there are several issues that need to be carefully addressed to ensure that the final results are reliable. This includes the use of non-linear rather than linear regression methods, careful choice of stoichiometric binding model, the choice of method (e.g., NMR vs. UV-Vis) and concentration of host, the application of advanced data analysis methods such as global analysis and finally the estimation of uncertainties and confidence intervals for the results obtained. This tutorial review will give a systematic overview of all these issues-highlighting some of the key messages herein with simulated data analysis examples.

摘要

最常见的用于量化超分子化学中相互作用的方法是滴定客体到主体的溶液中,通过 NMR、UV-Vis、荧光或其他技术来记录一些物理性质的变化。尽管这种方法表面上很简单,但需要仔细解决几个问题,以确保最终结果可靠。这包括使用非线性而不是线性回归方法、仔细选择化学计量比结合模型、方法的选择(例如 NMR 与 UV-Vis)和主体浓度、应用先进的数据分析方法,如全局分析,最后是对所得到的结果进行不确定性和置信区间的估计。本教程综述将系统地概述所有这些问题,并通过模拟数据分析示例突出其中的一些关键信息。

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