Experimental and theoretical proof is provided for the fact that a microfabricated packed bed column, which is uniformly filled with radially elongated pillars (REPs), can produce the same separation performance as nonpacked, open-tubular columns. These are generally recognized as the best possible chromatographic column format, offering the highest conceivable separation speed and efficiency. It is also demonstrated both experimentally and theoretically that, as long as pressure is not a limiting factor, the REP column format can even outperform the open-tubular column format, with significant gains in either speed or efficiency proportional to the tortuosity, τ, of the bed. Conducting chromatographic experiments on 4 cm long micromachined...
Here we report a low-pressure bead packing technique for the robust integration of high-performance ...
Band dispersion has been measured in micromachined separation channels structured with orderly dispo...
The development of sub-2-mu m particles, core shell particles, and monolithic columns has improved s...
Liquid chromatography in open tubular columns (OTLC) offers a means of achieving separations of high...
We report that we can achieve extremely high separation efficiencies using a narrow, open, tubular (...
In recent papers we have discussed the use of cuboid packed-bed devices as alternative to columns fo...
The vast majority of separations in liquid chromatography (LC) still use the typical packed particle...
High-performance liquid chromatography (HPLC) is one of the most versatile separation techniques ava...
We report on the possibility to achieve ultra high efficiencies (order of 1 million theoretical plat...
Liquid chromatography is an important downstream operation in the health care, biotechnology, biopha...
Ultra-high performance liquid chromatography is a vital tool for proteomics and pharmaceutical analy...
This paper builds on the fact that high aspect ratio rectilinear tubing columns of the same length a...
Effect of column geometry on the liquid chromatographic separations using 3D printed liquid chromato...
Effect of column geometry on the liquid chromatographic separations using 3D printed liquid chromato...
An overview is presented of possible pathways to enhance peak capacity in liquid chromatography (LC)...
Here we report a low-pressure bead packing technique for the robust integration of high-performance ...
Band dispersion has been measured in micromachined separation channels structured with orderly dispo...
The development of sub-2-mu m particles, core shell particles, and monolithic columns has improved s...
Liquid chromatography in open tubular columns (OTLC) offers a means of achieving separations of high...
We report that we can achieve extremely high separation efficiencies using a narrow, open, tubular (...
In recent papers we have discussed the use of cuboid packed-bed devices as alternative to columns fo...
The vast majority of separations in liquid chromatography (LC) still use the typical packed particle...
High-performance liquid chromatography (HPLC) is one of the most versatile separation techniques ava...
We report on the possibility to achieve ultra high efficiencies (order of 1 million theoretical plat...
Liquid chromatography is an important downstream operation in the health care, biotechnology, biopha...
Ultra-high performance liquid chromatography is a vital tool for proteomics and pharmaceutical analy...
This paper builds on the fact that high aspect ratio rectilinear tubing columns of the same length a...
Effect of column geometry on the liquid chromatographic separations using 3D printed liquid chromato...
Effect of column geometry on the liquid chromatographic separations using 3D printed liquid chromato...
An overview is presented of possible pathways to enhance peak capacity in liquid chromatography (LC)...
Here we report a low-pressure bead packing technique for the robust integration of high-performance ...
Band dispersion has been measured in micromachined separation channels structured with orderly dispo...
The development of sub-2-mu m particles, core shell particles, and monolithic columns has improved s...