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Overcoming solvent mismatch limitations in 2D-HPLC with temperature programming of isocratic mobile phases

机译:通过等度流动相的温度编程克服2D-HPLC中的溶剂失配限制

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This work describes a method for two-dimensional high performance liquid chromatography (2D-HPLC) that uses an isocratic mobile phase with a temperature gradient in the first dimension. Temperature programming was used to manipulate solvent elution strength in place of a mobile phase concentration gradient. This ensured that all eluent fractions transferred into the second dimension were of an identical solvent composition, i.e. the second dimension injection solvent did not increase during the course of the analysis. When applied to a complex natural product extract of coffee, the separation was completed in 35 min and had an orthogonality of 35% (calculated using the bins method) and a spreading angle of 52 degrees as determined via a geometric approach to factor analysis. This approach, incorporating a temperature gradient in the first dimension, compared favourably to previously reported 2D-HPLC separations of coffee, with similar or shorter analysis times.
机译:这项工作描述了一种二维高效液相色谱(2D-HPLC)的方法,该方法使用在第一维中具有温度梯度的等度流动相。使用温度程序设计代替流动相浓度梯度来控制溶剂洗脱强度。这确保了所有转移到第二维的洗脱液馏分都具有相同的溶剂组成,即在分析过程中第二维注入溶剂不会增加。当应用于复杂的天然咖啡提取物时,分离过程在35分钟内完成,正交度为35%(使用bins方法计算),并且通过几何方法进行因子分析确定,扩散角为52度。与先前报道的咖啡的2D-HPLC分离相比,这种方法在第一维中引入了温度梯度,分析时间相近或更短。

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