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高温液相色谱法以及采用高压电喷雾电离的与质谱联用技术

High-Temperature Liquid Chromatography and the Hyphenation with Mass Spectrometry Using High-Pressure Electrospray Ionization.

作者信息

Chen Lee Chuin

机构信息

Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, 4-3-11 Takeda, Kofu, Yamanashi 400-8511, Japan.

出版信息

Mass Spectrom (Tokyo). 2019;8(2):S0079. doi: 10.5702/massspectrometry.S0079. Epub 2019 Aug 26.

Abstract

Increasing the operating temperature of the liquid chromatography (LC) column has the same effect as reducing the diameter of the packing particles on minimizing the contribution of -term in the van Deemter equation, flattening the curve of plate height linear velocity in the high-speed region, thus allowing a fast LC analysis without the loss of plate count. While the use of smaller particles requires a higher pumping pressure, operating the column at higher temperature reduces the pressure due to lower liquid viscosity. At present, the adoption of high-temperature LC lags behind the ultra-high-pressure LC. Nevertheless, the availability of thermally stable columns has steadily improved and new innovations in this area have continued to emerge. This paper gives a brief review and updates on the recent advances in high-temperature liquid chromatography (HTLC). Recent efforts of hyphenating the capillary HTLC with mass spectrometry a super-atmospheric pressure electrospray ionization is also reported.

摘要

提高液相色谱(LC)柱的操作温度,与减小填料颗粒直径具有相同的效果,即在范德姆特方程中使项的贡献最小化,使高速区域的板高-线速度曲线变平,从而可以进行快速LC分析而不会损失塔板数。虽然使用较小的颗粒需要更高的泵送压力,但在较高温度下操作色谱柱可因液体粘度降低而降低压力。目前,高温LC的采用落后于超高压LC。尽管如此,热稳定柱的可用性已稳步提高,该领域的新创新也不断涌现。本文简要回顾并更新了高温液相色谱(HTLC)的最新进展。还报道了将毛细管HTLC与质谱联用——超大气压电喷雾电离的最新成果。

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