The variation in mobile phase velocity as a function of the column radius has been shown to be a major limitation in the efficiency of HPLC columns. One contributing factor to the variability in the flow velocity stems from the heterogeneity in the radial packing density, leading to what has been described as the 'wall-effect'. The wall-effect generates parabolic-type elution profiles, which dilutes the sample and creates tailing bands. In this communication a new column technology is discussed that has been designed to overcome the wall effect, minimising the limitations associated with packing heterogeneity. This technology has been referred to as active flow technology and consists of two types of column designs, parallel segmented flow ...
The performance of curtain flow chromatography column technology with MS detection was evaluated for...
The performance of active flow technology chromatography columns in parallel segmented flow mode pac...
Active flow technology (AFT) columns are designed to remove inefficient flow processes associated wi...
It is now well understood that chromatography columns are heterogeneously packed. During the column ...
HPLC columns are heterogeneous in their packing density, both in the axial and radial directions. Ra...
A new column technology - termed parallel segmented outlet flow was employed here to illustrate gain...
Narrow bore columns find advantage in HPLC applications when volumetric flow is important, For examp...
Active Flow Technology (AFT) is a form of column technology that increases the separation performanc...
The effects of column length on performance in segmented flow chromatography were tested. Column eff...
An inter-laboratory study was undertaken to test the analytical performance of curtain flow chromato...
Active flow management in the form of curtain flow sample introduction and segmented outlet flow con...
The development of sub-2-mu m particles, core shell particles, and monolithic columns has improved s...
A new column format known as parallel segmented flow has recently been introduced, whereby improveme...
The development of sub-2-µm particles, core–shell particles, and monolithic columns has improved se...
The performance of curtain flow chromatography column technology with MS detection was evaluated for...
The performance of curtain flow chromatography column technology with MS detection was evaluated for...
The performance of active flow technology chromatography columns in parallel segmented flow mode pac...
Active flow technology (AFT) columns are designed to remove inefficient flow processes associated wi...
It is now well understood that chromatography columns are heterogeneously packed. During the column ...
HPLC columns are heterogeneous in their packing density, both in the axial and radial directions. Ra...
A new column technology - termed parallel segmented outlet flow was employed here to illustrate gain...
Narrow bore columns find advantage in HPLC applications when volumetric flow is important, For examp...
Active Flow Technology (AFT) is a form of column technology that increases the separation performanc...
The effects of column length on performance in segmented flow chromatography were tested. Column eff...
An inter-laboratory study was undertaken to test the analytical performance of curtain flow chromato...
Active flow management in the form of curtain flow sample introduction and segmented outlet flow con...
The development of sub-2-mu m particles, core shell particles, and monolithic columns has improved s...
A new column format known as parallel segmented flow has recently been introduced, whereby improveme...
The development of sub-2-µm particles, core–shell particles, and monolithic columns has improved se...
The performance of curtain flow chromatography column technology with MS detection was evaluated for...
The performance of curtain flow chromatography column technology with MS detection was evaluated for...
The performance of active flow technology chromatography columns in parallel segmented flow mode pac...
Active flow technology (AFT) columns are designed to remove inefficient flow processes associated wi...