4.5 Review

Open tubular liquid chromatography: Recent advances and future trends

Journal

JOURNAL OF SEPARATION SCIENCE
Volume -, Issue -, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jssc.202300373

Keywords

capillary LC; miniaturized LC; nanoLC; open tubular columns; open tubular liquid chromatography

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Nano-liquid chromatography (nanoLC) is a primary analytical technique that has gained significant attention across scientific domains. It offers improved chromatographic performance and detectability compared to conventional high-performance LC. Though open tubular LC (OTLC) faces challenges, recent progress has been made in developing and utilizing narrow columns. The review provides an updated outlook on OTLC's developments, instrumental challenges, advancements in column technology, and selected applications.
Nano-liquid chromatography (nanoLC) is gaining significant attention as a primary analytical technique across various scientific domains. Unlike conventional high-performance LC, nanoLC utilizes columns with inner diameters (i.ds.) usually ranging from 10 to 150 & mu;m and operates at mobile phase flow rates between 10 and 1000 nl/min, offering improved chromatographic performance and detectability. Currently, most exploration of nanoLC has focused on particle-packed columns. Although open tubular LC (OTLC) can provide superior performance, optimized OTLC columns require very narrow i.ds. (< 10 & mu;m) and demand challenging instrumentation. At the moment, these challenges have limited the success of OTLC. Nevertheless, remarkable progress has been made in developing and utilizing OTLC systems featuring narrow columns (< 2 & mu;m). Additionally, significant efforts have been made to explore larger columns (10-75 & mu;m i.d), demonstrating practical applicability in many situations. Due to their perceived advantages, interest in OTLC has resurged in the last two decades. This review provides an updated outlook on the latest developments in OTLC, focusing on instrumental challenges, achievements, and advancements in column technology. Moreover, it outlines selected applications that illustrate the potential of OTLC for performing targeted and untargeted studies.

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