首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Determination of thermodynamic values of acidic dissociation constants and complexation constants of profens and their utilization for optimization of separation conditions by Simul 5 Complex
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Determination of thermodynamic values of acidic dissociation constants and complexation constants of profens and their utilization for optimization of separation conditions by Simul 5 Complex

机译:Simul 5配合物的酸解离常数和质子络合常数的热力学值的确定及其在分离条件优化中的应用

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In this paper we determine acid dissociation constants, limiting ionic mobilities, complexation constants with β-cyclodextrin or heptakis(2,3,6-tri-O-methyl)-β-cyclodextrin, and mobilities of resulting complexes of profens, using capillary zone electrophoresis and affinity capillary electrophoresis. Complexation parameters are determined for both neutral and fully charged forms of profens and further corrected for actual ionic strength and variable viscosity in order to obtain thermodynamic values of complexation constants. The accuracy of obtained complexation parameters is verified by multidimensional nonlinear regression of affinity capillary electrophoretic data, which provides the acid dissociation and complexation parameters within one set of measurements, and by NMR technique. A good agreement among all discussed methods was obtained. Determined complexation parameters were used as input parameters for simulations of electrophoretic separation of profens by Simul 5 Complex. An excellent agreement of experimental and simulated results was achieved in terms of positions, shapes, and amplitudes of analyte peaks, confirming the applicability of Simul 5 Complex to complex systems, and accuracy of obtained physical-chemical constants. Simultaneously, we were able to demonstrate the influence of electromigration dispersion on the separation efficiency, which is not possible using the common theoretical approaches, and predict the electromigration order reversals of profen peaks. We have shown that determined acid dissociation and complexation parameters in combination with tool Simul 5 Complex software can be used for optimization of separation conditions in capillary electrophoresis.
机译:在本文中,我们使用毛细管区确定了酸解离常数,极限离子迁移率,与β-环糊精或庚基(2,3,6-三-O-甲基)-β-环糊精的络合常数,以及由此产生的脯氨酸络合物的迁移率电泳和亲和毛细管电泳。确定中性和完全带电形式的脯氨酸的络合参数,并针对实际离子强度和可变粘度进行进一步校正,以获得络合常数的热力学值。通过亲和毛细管电泳数据的多维非线性回归(通过一组测量提供酸解离和络合参数)和NMR技术,验证了所获得络合参数的准确性。在所有讨论的方法中都取得了良好的共识。所确定的络合参数用作模拟Simul 5 Complex进行的电泳分离的输入参数。在分析物峰的位置,形状和幅度方面,实验和模拟结果取得了极好的一致性,证实了Simul 5 Complex在复杂系统中的适用性以及所获得的物理化学常数的准确性。同时,我们能够证明电迁移分散度对分离效率的影响(使用常规理论方法是不可能的),并预测了Profen峰的电迁移顺序反转。我们已经表明,结合工具Simul 5 Complex软件确定的酸解离和络合参数可用于优化毛细管电泳中的分离条件。

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