首页> 外文期刊>Journal of Biochemical and Biophysical Methods >Effect of system variables involved in packed column SFC of nevirapine as model analyte using response surface methodology: Application to retention thermodynamics, solute transfer kinetic study and binary diffusion coefficient determination.
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Effect of system variables involved in packed column SFC of nevirapine as model analyte using response surface methodology: Application to retention thermodynamics, solute transfer kinetic study and binary diffusion coefficient determination.

机译:奈韦拉平填充塔SFC中的系统变量作为模型分析物的响应面方法的影响:在保留热力学,溶质传递动力学研究和二元扩散系数测定中的应用。

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摘要

A multifactor optimization technique is successfully applied to study the effect of simultaneously varying the system variables on feasibility of nevirapine analysis by packed column supercritical fluid chromatography (PC-SFC). The optimal conditions were determined with the aid of the response surface methodology using 3(3) factorial designs. The method is based on methanol-modified carbon dioxide as the mobile phase at flow rate of 3.0 ml/min with elution through a JASCO Finepak SIL-5, [C(18) (5-micron, 25 cmx4.6 mm, i.d.)] column using photodiode array detection. The method has been successfully used to analyze commercial solid dosage form to assess the chromatographic performance of SFC system. The present work briefs the thermodynamic applications of PC-SFC with an emphasis on the results of nevirapine. The foremost of such applications is the determination of solute diffusion coefficient in supercritical mobile phase by Taylor-Aris peak broadening technique.
机译:多因素优化技术已成功应用于研究同时改变系统变量对使用填充柱超临界流体色谱法(PC-SFC)进行奈韦拉平分析的可行性的影响。最佳条件是通过使用3(3)析因设计的响应面方法确定的。该方法以甲醇改性的二氧化碳为流动相,流速为3.0 ml / min,并通过JASCO Finepak SIL-5,[C(18)(5微米,25 cmx4.6 mm,内径)洗脱]列使用光电二极管阵列检测。该方法已成功用于分析商业固体剂型,以评估SFC系统的色谱性能。本工作简要介绍了PC-SFC的热力学应用,重点是奈韦拉平的结果。此类应用中最重要的是通过泰勒-阿里斯峰加宽技术确定超临界流动相中的溶质扩散系数。

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