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C A Rimmer

Publications and source records attributed to C A Rimmer.

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Gradient elution techniques for capillary electrochromatography.

Capillary electrochromatography (CEC) is a rapidly maturing technique, but still in need of further instrumental development and in need of unique applications that are not possible by traditional pressure-driven LC. We review the development of gradient elution schemes for CEC, beginning with pH gradients initially developed for capillary electrophoresis. Step gradients are the most easily instrumentally implemented, but provide less flexibility in separation than continuous gradients. Pressure-assisted CEC is easily adapted to gradient elution schemes, but does not offer the advantages of very high column efficiency provided by totally electro-driven mobile phases. The development of flow-injection interfaces allows a true solvent gradient to be generated by micro-LC pumps, with the mobile phase drawn into the separation capillary by pure electroosmotic flow. While requiring both a CEC instrument and a traditional pump or pumps capable of generating the gradient, this method offers advantages of greatly reduced column handling, prolonging column lifetimes, and allows simple autosampling. We also discuss voltage gradients, which provide a mobile phase velocity gradient.

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Gradient elution electrochromatography with a flow-injection analysis interface.

A flow-injection analysis-capillary electrochromatography interface is used for gradient elution capillary electrochromatography giving purely electroosmotic flow through the analytical column. Solvent gradients were generated with a micro-LC system connected to the interface. Injections were carried out on-line using an inert rotary LC valve controlled by an electric actuator. Gradient shape was measured from acetonitrile (5% acetone)-water (50:50, v/v) to (100:0) in open tubular experiments. When compared to conventional instrumentation, peak tailing and peak width increased slightly using the interface. A test mixture of nine solutes was evaluated in isocratic and gradient elution modes. Using the interface, a gradient of MeCN-water (60:40) to (90:10) provided baseline separation of all nine solutes in under 18 min with good band spacing. Reproducibility of retention times in eight replicate injections was found to be better than 2% R.S.D. for all solutes. This interface also allows use of autoinjectors and dramatically lessens movement of the packed column, improving column lifetime.

Chromatography, High Pressure Liquid↗