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Simple and Comprehensive Two-Dimensional Reversed-Phase HPLC Using Monolithic Silica Columns

机译:使用整体硅胶柱的简单且全面的二维反相HPLC

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Simple and comprehensive two-dimensional (2D)-HPLC was studied in a reversed-phase mode using monolithic silica columns for second-dimension (2nd-D) separation. Every fraction from the first column, 15 cm long (4.6-mm i.d.), packed with fluoroalkylsilyl-bonded (FR) silica particles, was subjected to the separation in the 2nd-D using one or two octadecylsilylated (C_(18)) monolithic silica columns (4.6-mm i.d., 3 cm). Monolithic silica columns in the 2nd-D were eluted at a flow rate of up to 10 mL/min with separation time of 30 s that meets the fractionation every 15-30 s at the first dimension (1st-D) operated at a flow rate of 0.4-0.8 mL/min. Three cases were studied. (1) In the simplest scheme of 2D-HPLC, effluent of the 1st-D was directly loaded into an injector loop of 2nd-D HPLC for 28 s, and 2 s was allowed for injection. (2) Two six-port valves each having a sample loop were used to hold the effluent of the 1st-D alternately for 30 s for one 2nd-D column to effect comprehensive 2D-HPLC without the loss of 1st-D effluent. (3) Two monolithic silica columns were used for 2nd-D by using a switching valve and two sets of 2nd-D chromatographs separating each fraction of the 1st-D effluent with the two 2nd-D columns alternately. In this case, two columns of the same stationary phase (C_(18)) or different phases, C_(18) and (pentabromobenzyloxy)propylsilyl-bonded (PBB), could be employed at the 2nd-D, although the latter needed two complementary runs. The systems produced peak capacity of ~1000 in ~60 min in cases 1 and 2 and in ~30 min in case 3. The three stationary phases, FR, C_(18), and PBB, showed widely different selectivity from each other, making 2D separations possible. The simple and comprehensive 2D-HPLC utilizes the stability and high efficiency at high linear velocities of monolithic silica columns.
机译:使用整体硅胶色谱柱进行二维(2D-D)分离,以反相模式研究了简单全面的二维(2D)-HPLC。使用一个或两个十八烷基甲硅烷基化(C_(18))整片,将填充了氟烷基甲硅烷基键合(FR)硅胶颗粒的15 cm长(内径4.6 mm内径)的第一根色谱柱的每一馏分进行第二次分离硅胶柱(内径4.6毫米,3厘米)。以高达10 mL / min的流速洗脱第二维D硅胶柱,分离时间为30 s,该分离时间在以流速运行的第一维(1st-D)上每15-30 s分离一次0.4-0.8mL / min。研究了三例。 (1)在最简单的2D-HPLC方案中,将1d-D的流出物直接装入2nd-D HPLC的进样器回路中28 s,然后注入2 s。 (2)使用两个分别具有样品定量环的六通阀将一维流出物交替保持30 s,以容纳一个二维色谱柱,以实现全面的二维液相色谱,而不会损失一维流出物。 (3)通过使用切换阀将两块整体式硅胶柱用于二维色谱,并使用两组二维色谱仪将一维流出物的每个馏分与两个二维色谱柱交替分离。在这种情况下,尽管在第二个色谱柱上需要使用两根相同固定相(C_(18))或不同相的色谱柱C_(18)和(五溴苄氧基)丙基甲硅烷基键合(PBB),互补运行。在第一种和第二种情况下,系统在约60分钟内产生了约1000的峰值容量,在第3种情况下,系统在约30分钟内产生了峰容量。三个固定相FR,C_(18)和PBB表现出很大的选择性,从而可以进行2D分离。简单而全面的2D-HPLC利用整体硅胶色谱柱在高线速度下的稳定性和高效率。

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