We describe the development of a high-resolution, noncontact fraction collector for liquid chromatography (LC) separations, allowing high-resolution fractionation in high-density well plates. The device is based on a low-dead-volume solenoid valve operated at 1–30 Hz for accurate collection of fractions of equal volume. The solenoid valve was implemented in a modified autosampler resulting in the so-called FractioMate fractionator. The influence of the solenoid supply voltage on solvent release was determined and the effect of the frequency, flow rate, and mobile phase composition was studied. For this purpose, droplet release was visually assessed for a wide range of frequencies and flow rates, followed by quantitative evaluation of a sele...
Resin fractionation is the most widely used technique to isolate and characterize natural organic ma...
This research presents an analytical technology for highly efficient, high-resolution, and high-yiel...
In this study we developed a new LC nanofractionation platform that combines a human cell (BG1.Luc) ...
Supplemental material, Supplementary_information for Compound Identification Using Liquid Chromatogr...
We describe the development and evaluation of a GC-MS fractionation platform that combines high-reso...
To purify the heterogeneous natural organic matter (NOM), various experimental methods are used (e.g...
Nowadays routine residue monitoring involves the analysis of many compounds from different classes, ...
The development of a contactless postcolumn spotter technology capable of rapidly and accurately dep...
When analyzing natural products, such as steviol glycosides, one must always be aware of the fact th...
A liquid-liquid fractionation method based upon well-known chemical reactions has been developed. Wi...
Liquid chromatography is a broad classification used to describe a variety of different chromatograp...
Natural products are in high demand these days due to rising awareness among consumers. Healthy diet...
In this study, an efficient interface, based on a fractionized sampling and stacking (FSS) strategy,...
The aims of this thesis were to investigate the potential of multi-dimensional separation platforms ...
Elution chromatography has found multiple applications in the biochemical field, both in the analyti...
Resin fractionation is the most widely used technique to isolate and characterize natural organic ma...
This research presents an analytical technology for highly efficient, high-resolution, and high-yiel...
In this study we developed a new LC nanofractionation platform that combines a human cell (BG1.Luc) ...
Supplemental material, Supplementary_information for Compound Identification Using Liquid Chromatogr...
We describe the development and evaluation of a GC-MS fractionation platform that combines high-reso...
To purify the heterogeneous natural organic matter (NOM), various experimental methods are used (e.g...
Nowadays routine residue monitoring involves the analysis of many compounds from different classes, ...
The development of a contactless postcolumn spotter technology capable of rapidly and accurately dep...
When analyzing natural products, such as steviol glycosides, one must always be aware of the fact th...
A liquid-liquid fractionation method based upon well-known chemical reactions has been developed. Wi...
Liquid chromatography is a broad classification used to describe a variety of different chromatograp...
Natural products are in high demand these days due to rising awareness among consumers. Healthy diet...
In this study, an efficient interface, based on a fractionized sampling and stacking (FSS) strategy,...
The aims of this thesis were to investigate the potential of multi-dimensional separation platforms ...
Elution chromatography has found multiple applications in the biochemical field, both in the analyti...
Resin fractionation is the most widely used technique to isolate and characterize natural organic ma...
This research presents an analytical technology for highly efficient, high-resolution, and high-yiel...
In this study we developed a new LC nanofractionation platform that combines a human cell (BG1.Luc) ...