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Programmed Field Decay Thermal Field Flow Fractionation of Polymers:A Calibration Method

机译:聚合物程序场衰减热场流分馏:一种校正方法

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The universal calibration procedure typical of thermal field flow fractionation(ThFFF)under constant thermal field operation was extended to thermal field programming(TFP)operation.The method requires knowledge of the following:(a)the programming function,which only depends on the thermal field decay function,(b)the physicochemical properties of the solvent,and(c)the calibration plot under varying channel cold wall temperatures(T_c).Two field flow fractionation field programming conditions,with either a constant or a variable in time carrier flow velocity,are exploited.The method is based on determination,for each retention time position,of the average A retention value typical of TFP ThFFF.This parameter is then used to obtain the calibration plot(i.e.,the molecular weight of the speC_(16)s as a function of the retention time position)by using the programming function and the calibration plot under varying T_c values.The procedure approximation errors are also derived as a function of the programming type and solute-solvent system.To properly test the procedure,the calibration plot for the system constituted by polystyrene(PS)in cis-trans Decalin was determined,under varying conditions T_c and thermal gradients,by using a set of monodisperse PS standards of different molecular weights(M).The procedure was first validated by simulation under two typical cases of TFP ThFFF operation.The approximation errors were found acceptable(in the worse cases,the accuracy in M prediction was 3%)and are in agreement with the theory.The procedure was then experimentally validated under varying programming decay function conditions.The reproducibility and accuracy of the M determination are both better than 2%.
机译:恒定热场操作下典型的热流分馏(ThFFF)通用校准程序已扩展到热场编程(TFP)操作。该方法需要具备以下知识:(a)仅取决于热场的编程功能场衰减函数,(b)溶剂的物理化学性质和(c)在变化的通道冷壁温度(T_c)下的标定图。两种场流分馏场编程条件,载流子时间恒定或可变该方法基于确定每个保留时间位置TFP ThFFF的平均A保留值的平均值。然后使用该参数获得校准图(即speC_(16 )s作为保留时间位置的函数)通过​​使用编程函数和在变化的T_c值下的校准图得出。为了正确地测试该程序,使用一组单分散PS在不同的条件T_c和热梯度下,测定了顺式-反式十氢化萘中聚苯乙烯(PS)组成的系统的校准图。首先在两种典型的TFP ThFFF操作情况下通过仿真验证了该程序。发现近似误差是可以接受的(在更坏的情况下,M预测的准确度为3%)并且一致然后在变化的程序衰减函数条件下通过实验验证了该程序.M测定的重现性和准确性均优于2%。

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