00A-4435-E0,Gemini 5u C18 110A LC Column 30 x 4.6 mm

(1 customer review)

Gemini C18 HPLC phase offers unique reversed phase selectivity, high structural integrity, and increased loadability which make it ideal for preparative and purification applications in pre-packed columns and bulk media.

Description

00A-4435-E0

00A-4435-E0

Recommended Use
Separation of basic compounds under high pH conditions
Carbon Load % 14 14 %
Endcapping Yes
Technique HPLC
Separation Mode Reversed Phase
Brand Gemini
Phase C18
Length (mm) 30.0000
Particle Size 5.0000
Internal Diameter 4.6000
The 00A-4435-E0 HPLC column is designed to deliver stable and reliable reversed phase performance for laboratories working with basic compounds under high pH conditions and the 00A-4435-E0 column provides consistent retention behavior that supports accurate separation while maintaining smooth peak shape which helps analysts achieve dependable results during routine analysis and advanced method development and this makes it suitable for quality control research and analytical environments where stability and reproducibility are essential the stationary phase chemistry used in this column is engineered to withstand elevated pH conditions while preserving chromatographic integrity allowing laboratories to analyze challenging basic analytes without degradation or performance loss and the 00A-4435-E0 column Gemini 5u C18 110A LC Column 30 x 4.6 mm maintains predictable selectivity across repeated injections supporting long term method reliability in regulated workflows with its optimized packing structure the column promotes uniform flow and efficient mass transfer which results in stable pressure profiles and sharp peak definition even during extended analytical sequences and these performance characteristics support accurate compound identification and quantification making the 00A-4435-E0 column a dependable tool for validated methods and compliance driven laboratories durability is a key strength of this column as it is built to maintain performance stability over prolonged use reducing downtime and replacement frequency for laboratories handling high sample volumes and the 00A-4435-E0 column continues to perform consistently even when exposed to demanding mobile phase conditions ensuring uninterrupted workflow efficiency the column integrates easily into standard HPLC systems allowing laboratories to adopt it without significant method modification or system changes which saves time and improves productivity and the 00A-4435-E0 column supports reproducible analytical output which is critical for laboratories focused on data accuracy operational consistency and regulatory confidence for analysts working with complex basic compounds this column delivers reliable separation performance and stable retention behavior that enhances data clarity and interpretation and the design supports dependable operation across diverse analytical applications by choosing the 00A-4435-E0 column laboratories gain a robust chromatography solution engineered for high pH stability consistent reversed phase separation and long term analytical confidence and the 00A-4435-E0 stands as a trusted option for laboratories that require durability precision and reliability in modern HPLC analysis

Why should I choose the 00A-4435-E0 column from Ordinals for high pH HPLC applications?

The 00A-4435-E0 column from Ordinals is engineered to remain stable under high pH conditions while delivering reliable separation of basic compounds making it an excellent choice for accurate reproducible and long lasting HPLC performance.

1 review for 00A-4435-E0,Gemini 5u C18 110A LC Column 30 x 4.6 mm

  1. user

    The 00A-4435-E0 column offers strong and dependable performance for high pH reversed phase HPLC applications. Users appreciate its stability when separating basic compounds along with its consistent retention and clean peak shapes. It is well suited for routine laboratory analysis and method development where reliability and durability are essential.

Add a review

Your email address will not be published. Required fields are marked *