Mirmohseni A, Abdollahi H, Rostamizadeh K
Polymer Research Technology Laboratory, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, Iran.
Anal Chim Acta. 2007 Feb 28;585(1):179-84. doi: 10.1016/j.aca.2006.11.082. Epub 2006 Dec 13.
Net analyte signal (NAS)-based method called HLA/GO was applied for the selectively determination of binary mixture of ethanol and water by quartz crystal nanobalance (QCN) sensor. A full factorial design was applied for the formation of calibration and prediction sets in the concentration ranges 5.5-22.2 microg mL(-1) for ethanol and 7.01-28.07 microg mL(-1) for water. An optimal time range was selected by procedure which was based on the calculation of the net analyte signal regression plot in any considered time window for each test sample. A moving window strategy was used for searching the region with maximum linearity of NAS regression plot (minimum error indicator) and minimum of PRESS value. On the base of obtained results, the differences on the adsorption profiles in the time range between 1 and 600 s were used to determine mixtures of both compounds by HLA/GO method. The calculation of the net analytical signal using HLA/GO method allows determination of several figures of merit like selectivity, sensitivity, analytical sensitivity and limit of detection, for each component. To check the ability of the proposed method in the selection of linear regions of adsorption profile, a test for detecting non-linear regions of adsorption profile data in the presence of methanol was also described. The results showed that the method was successfully applied for the determination of ethanol and water.
一种基于净分析物信号(NAS)的方法,即HLA/GO,被应用于通过石英晶体纳米天平(QCN)传感器选择性测定乙醇和水的二元混合物。采用全因子设计在乙醇浓度范围为5.5 - 22.2 μg mL⁻¹和水浓度范围为7.01 - 28.07 μg mL⁻¹内形成校准集和预测集。通过基于计算每个测试样品在任何考虑的时间窗口内的净分析物信号回归图的程序选择最佳时间范围。使用移动窗口策略搜索NAS回归图具有最大线性度(最小误差指标)且PRESS值最小的区域。根据所得结果,利用1至600秒时间范围内吸附曲线的差异,通过HLA/GO方法测定两种化合物的混合物。使用HLA/GO方法计算净分析信号,可以为每种组分确定诸如选择性、灵敏度、分析灵敏度和检测限等几个品质因数。为检验所提出的方法在选择吸附曲线线性区域方面的能力,还描述了在甲醇存在下检测吸附曲线数据非线性区域的测试。结果表明,该方法成功应用于乙醇和水的测定。