Description
00A-4254-E0

| Carbon Load % | 7 |
| Surface Area (sq.Meter/g) | 400 |
| USP Classification | L10 |
| Technique | HPLC |
| Separation Mode | Normal Phase |
| Pore Size | 100.0000 |
| Brand | Luna |
| Phase | CN |
| Length (mm) | 30.0000 |
| Particle Size | 3.0000 |
| Internal Diameter | 4.6000 |
The HPLC community consistently seeks reliable solutions for challenging separations and the Luna CN column identified as 00A-4254-E0 offers a powerful option for laboratories that work with extremely polar compounds because its cyano phase enables strong performance in both HILIC and normal phase modes and this makes the 00A-4254-E0 column a preferred choice for analysts who need versatility and dependable retention behaviors for complex samples while maintaining high reproducibility across method development workflows the balanced carbon load and optimized surface area of the 00A-4254-E0 column support stable retention of compounds that often show weak interactions on other stationary phases and this strengthens confidence in data quality and batch to batch consistency for regulated and research environments alike the 100 angstrom pore structure further enhances mass transfer offering efficient separation even for compounds with moderate molecular size and this supports laboratories that must maximize throughput without compromising analytical precision making the 00A-4254-E0 column a highly valuable addition to any workflow that focuses on quantifying polar analytes under USP L10 conditions the cyano bonded phase chemistry provides unique selectivity that differs meaningfully from C18 or C8 phases and this gives scientists improved flexibility when unexpected coelutions appear during screening because the 00A-4254-E0 setup can resolve functional groups that are difficult to separate on traditional reversed phase columns and this advantage is especially important for pharmaceutical testing food safety research and metabolomics applications where analytes often include sugars amino acids and other highly polar molecules that require specialized interactions to achieve sharp symmetric peak shapes the 3 micron particle size of this column enhances efficiency enabling high resolution even at shorter lengths and this characteristic reduces solvent consumption and overall run time which ultimately benefits laboratories with high sample volume the internal diameter of 4 point 6 millimeter delivers a strong balance between sensitivity and loading capacity allowing users to inject sample volumes suited for both exploration and routine quantitation processes the Luna CN chemistry is engineered to resist phase collapse under aqueous mobile phases and this is crucial because many analysts need a column that can seamlessly adapt between organic rich solvents for normal phase and water rich solvents for HILIC use thereby eliminating the need for multiple dedicated columns for different conditions the reproducible packing technology also ensures that each 00A-4254-E0 column exhibits stable retention factors and predictable selectivity profiles from the first injection to the final injection in a lifespan which supports validation processes and compliance needs in regulated laboratories the structural design promotes stable electrostatic interactions which improves separation of compounds with slight differences in polarity and this capability is essential when trying to differentiate between structurally similar analytes that may be difficult to resolve on other phases the Luna CN phase has long been trusted across scientific industries for providing reliable retention of hydrophilic molecules and the 00A-4254-E0 model continues this reputation with a durable design that stands up to repeated use across varying conditions making it an excellent fit for organizations that rely on consistent method execution the high surface area of four hundred square meters per gram enhances interaction opportunities between analytes and the stationary phase which improves overall chromatographic performance by and helping develop methods with stronger resolution for polar targets the versatile separation mode supports creative method development allowing scientists to shift between different solvent ratios and achieve new selectivity windows without replacing hardware and this adaptability is one of the primary reasons many professionals choose the Luna CN technology when entering early stage method design ultimately the 00A-4254-E0 column empowers laboratories to achieve robust reliable and flexible separation outcomes for polar and highly challenging compounds across a wide range of analytical industries and research settings Luna 3u CN 100A LC Column 30 x 4.6 mm
What is the main advantage of using the Luna CN 00A-4254-E0 column from ordinals?
The main advantage of choosing the Luna CN 00A-4254-E0 column from ordinals is its exceptional performance for separating extremely polar compounds using HILIC or normal phase techniques. Its cyano chemistry and optimized surface area deliver reliable retention, sharp peak shapes, and high method stability for routine and advanced analytical workflows.





user –
The 00A-4254-E0 column is a reliable choice for labs working with very polar compounds. Its CN phase gives stable retention and smooth performance in HILIC and normal phase methods. The column offers good peak shape, consistent results, and fast equilibration. It is durable, easy to use, and works well for both routine and development work. A strong option for analysts who need accuracy and repeatability in challenging polar compound separations.