Maintenance and Care of HPLC Columns
LCMSArticle | Academy

Maintenance and Care of HPLC Columns

Learn HPLC column care best practices, including cleaning, regeneration, storage, and preventive maintenance to extend column life, reduce downtime, and ensure reliable chromatographic results.
Maintenance and Care of HPLC Columns
2D-LC (Two-dimensional Liquid Chromatography): What, When and Why to Use it
LCMSArticle | Academy

2D-LC (Two-dimensional Liquid Chromatography): What, When and Why to Use it

Learn how two-dimensional liquid chromatography (2D-LC) overcomes the limits of 1D-LC. Explore its principles, operating modes, applications, and the latest advances shaping modern analytical science.
2D-LC (Two-dimensional Liquid Chromatography): What, When and Why to Use it
Degassing Techniques in HPLC: Inline vs Offline
LCMSArticle | Academy

Degassing Techniques in HPLC: Inline vs Offline

Learn why mobile phase degassing is essential for reliable HPLC performance. Compare inline and offline degassing methods, their advantages, limitations, and practical troubleshooting tips.
Degassing Techniques in HPLC: Inline vs Offline
Protein Purification by HPLC: Methods, Benefits, and Best Practices
LCMSArticle | Academy

Protein Purification by HPLC: Methods, Benefits, and Best Practices

Discover how HPLC enables efficient protein purification for biopharmaceuticals, proteomics, and biotechnology. Learn about purification modes, key benefits, optimization strategies, and best practices.
Protein Purification by HPLC: Methods, Benefits, and Best Practices
Solvent Switching in Liquid Chromatography Columns: How to Change Column Solvents Safely
LCMSArticle | Academy

Solvent Switching in Liquid Chromatography Columns: How to Change Column Solvents Safely

Learn how to safely switch solvents in an LC column, verify solvent miscibility, use IPA between immiscible systems, and prevent irreversible column damage.
Solvent Switching in Liquid Chromatography Columns: How to Change Column Solvents Safely
Column contamination – what is happening, and how it can be avoided
LCMSArticle | Academy

Column contamination – what is happening, and how it can be avoided

Column contamination is a leading cause of shortened HPLC column lifetime, leading to high back pressure. Learn why it happens and how to prevent blocked frits with simple precautions.
Column contamination – what is happening, and how it can be avoided
Advantages of using immobilized stationary phases in chiral separations
LCMSArticle | Academy

Advantages of using immobilized stationary phases in chiral separations

Polysaccharide chiral stationary phases enable wide enantiomeric recognition, solvent flexibility, and robust resolution with coated or immobilised designs.
Advantages of using immobilized stationary phases in chiral separations
Overcoming Peak Tailing of Basic Analytes in Silica Type A Stationary Phases in RP
LCMSArticle | Academy

Overcoming Peak Tailing of Basic Analytes in Silica Type A Stationary Phases in RP

Struggling with peak tailing of basic compounds in RP-LC using type A silica columns? Discover how low-pH buffers and silanol suppressors can improve peak shape—plus why type B silica is a better choice.
Overcoming Peak Tailing of Basic Analytes in Silica Type A Stationary Phases in RP
The Role of End-Capping in RP
LCMSArticle | Academy

The Role of End-Capping in RP

New end-capping technologies can significantly improve the analysis of compounds that were once considered challenging.
The Role of End-Capping in RP
How can capacity factors drive method robustness?
LCMSArticle | Academy

How can capacity factors drive method robustness?

How can capacity factors drive method robustness?
How can capacity factors drive method robustness?