Takagi Keisuke, Iharada Takeshi, Tsukagoshi Kazuhiko
Applied Chemistry, Graduate School of Science and Engineering, Doshisha University, Kyotanabe, 610-0321, Japan.
Anal Sci. 2024 Nov;40(11):2081-2087. doi: 10.1007/s44211-024-00636-1. Epub 2024 Jul 30.
We have developed a HPLC system where phase-separation multiphase flow works in the separation column as an eluent. We call the novel separation mechanism a phase-separation mode. The ternary mixed solution of water/acetonitrile/ethyl acetate, which is one of the two-phase-separation mixed solutions, caused the phase-separation multiphase flow via phase change from homogeneous to heterogeneous with the temperature effect (from 20 to 0 °C). In this study, we tried to perform phase-separation multiphase flow with the pressure effect instead of the temperature one. The fused-silica capillary tube (50 cm length and 50 µm inner diameter) was allied to the downstream of the column to apply the pressure of 5.5 MPa to the system. Model analytes of 2,6-naphthalenedisulfonic acid (2,6-NDS) and 1-naphthol (1-NA) were examined. For example, solutions (the volume% of water/acetonitrile/ethyl acetate; 20:55:25, organic-rich) and (60:30:10, water-rich) were used as eluent. The model analytes were not separated with both solutions at the pressure of 1.5 MPa and 20 °C. But with the organic-rich solution, 1-NA and 2,6-NDS were separated in this order and with the water-rich solution, they were separated in the reverse order at the pressure of 5.5 MPa and 20 °C. The phase-separation mode could be performed at the high pressure even at the room temperature.
我们开发了一种高效液相色谱(HPLC)系统,其中相分离多相流在分离柱中作为洗脱剂起作用。我们将这种新型分离机制称为相分离模式。水/乙腈/乙酸乙酯的三元混合溶液是两相分离混合溶液之一,通过温度效应(从20℃降至0℃)导致从均相到非均相的相变,从而产生相分离多相流。在本研究中,我们尝试利用压力效应而非温度效应来实现相分离多相流。将熔融石英毛细管(长度50 cm,内径50 µm)连接到柱的下游,以便对系统施加5.5 MPa的压力。对2,6-萘二磺酸(2,6-NDS)和1-萘酚(1-NA)的模型分析物进行了研究。例如,使用溶液(水/乙腈/乙酸乙酯的体积百分比;20:55:25,富有机相)和(60:30:10,富水相)作为洗脱剂。在1.5 MPa压力和20℃条件下,两种溶液均未分离出模型分析物。但在5.5 MPa压力和20℃条件下,使用富有机相溶液时,1-NA和2,6-NDS按此顺序分离,使用富水相溶液时,它们以相反顺序分离。即使在室温下,相分离模式也可以在高压下进行。