Description
00A-4423-B0
Recommended Use
Separation of mixtures with both polar and non-polar compounds
| Carbon Load % | 12 % |
| Technique | HPLC |
| Separation Mode | Reversed Phase |
| Brand | Synergi |
| Phase | Fusion-RP |
| Length (mm) | 30.0000 |
| Particle Size | 2.5000 |
| Internal Diameter | 2.0000 |
The 00A-4423-B0 HPLC column is developed to support reliable reversed phase chromatography for laboratories that work with mixtures containing both polar and non polar compounds and the 00A-4423-B0 column offers balanced retention behavior that allows analysts to achieve clear separation without excessive run time or unstable peak behavior and this makes it a dependable choice for routine analysis quality control and research workflows where accuracy and consistency are essential for confident decision making The stationary phase chemistry used in this column is engineered to interact effectively with a wide range of analytes allowing smooth transitions between polar and non polar interactions during Synergi 2.5u Fusion-RP 100A LC Column 30 x 2.0 mm separation and this balanced design helps laboratories simplify method development by reducing the need for multiple columns when analyzing complex mixtures and the 00A-4423-B0 column supports predictable selectivity that remains stable across repeated injections and extended usage With its optimized particle structure and column dimensions the column promotes efficient mass transfer and uniform flow throughout the packed bed which contributes to improved resolution and stable pressure profiles during operation and analysts benefit from consistent retention times which support repeatable data generation and dependable method validation making the 00A-4423-B0 suitable for regulated environments and routine laboratory use Another advantage of this column lies in its compatibility with common reversed phase mobile phases allowing easy integration into existing HPLC systems without major adjustments and this flexibility reduces downtime and improves productivity for laboratories managing high sample volumes or tight reporting schedules and the column maintains performance even under demanding conditions supporting reliable outcomes during extended analytical runs The design of the column emphasizes durability and operational stability helping laboratories minimize replacement frequency and maintain consistent performance over time and this reliability is especially valuable for teams focused on cost efficiency and long term method stability and the 00A-4423-B0 column delivers dependable peak shape and resolution that supports accurate compound identification and quantification For analysts working with diverse sample matrices this column provides a practical solution that balances selectivity and robustness allowing confident separation of compounds with varying chemical properties and the stable stationary phase ensures reproducible behavior across different sample loads and mobile phase compositions and this consistency supports smooth laboratory workflows and high quality data output Choosing the 00A-4423-B0 column allows laboratories to streamline analytical processes while maintaining high performance standards and its ability to handle both polar and non polar compounds within a single method makes it a versatile and efficient tool for modern chromatography and the 00A-4423-B0 stands out as a reliable solution for laboratories that value consistency flexibility and dependable reversed phase HPLC performance in everyday analytical applications
Why should I choose the 00A-4423-B0 column from Ordinals for my HPLC applications?
The 00A-4423-B0 column from Ordinals is designed to deliver consistent separation reliable retention and stable performance making it a strong choice for laboratories that require accurate reproducible and efficient HPLC analysis in daily workflows.





user –
The 00A-4423-B0 column offers dependable performance for routine HPLC analysis. Users appreciate its consistent retention stable peak shapes and reliable results across repeated runs. It performs well in standard laboratory conditions and supports efficient method execution making it a trusted option for analytical and research applications where accuracy and stability are essential.