Radke Wolfgang
Deutsches Kunststoff-Institut (German Institute for Polymers), Schlossgartenstr 6, Darmstadt D-64289, Germany.
J Chromatogr A. 2004 Mar 5;1028(2):211-8. doi: 10.1016/j.chroma.2003.11.103.
Simulations of the distribution coefficients of linear polymers and regular combs with various spacings between the arms have been performed. The distribution coefficients were plotted as a function of the number of segments in order to compare the size exclusion chromatography (SEC)-elution behavior of combs relative to linear molecules. By comparing the simulated SEC-calibration curves it is possible to predict the elution behavior of comb-shaped polymers relative to linear ones. In order to compare the results obtained by computer simulations with experimental data, a variety of comb-shaped polymers varying in side chain length, spacing between the side chains and molecular weights of the backbone were analyzed by SEC with light-scattering detection. It was found that the computer simulations could predict the molecular weights of linear molecules having the same retention volume with an accuracy of about 10%, i.e. the error in the molecular weight obtained by calculating the molecular weight of the comb-polymer based on a calibration curve constructed using linear standards and the results of the computer simulations are of the same magnitude as the experimental error of absolute molecular weight determination.
已对具有不同臂间距的线性聚合物和规则梳状聚合物的分配系数进行了模拟。将分配系数作为链段数的函数绘制,以便比较梳状聚合物相对于线性分子的尺寸排阻色谱(SEC)洗脱行为。通过比较模拟的SEC校准曲线,可以预测梳状聚合物相对于线性聚合物的洗脱行为。为了将计算机模拟得到的结果与实验数据进行比较,用带光散射检测的SEC分析了各种侧链长度、侧链间距和主链分子量不同的梳状聚合物。发现计算机模拟能够以约10%的准确度预测具有相同保留体积的线性分子的分子量,即基于使用线性标准构建的校准曲线计算梳状聚合物分子量所得到的分子量误差与计算机模拟结果和绝对分子量测定的实验误差大小相同。