Designed for the complexity of biopharmaceutical molecules, charge variants, and structural isomers — CromCarb™ Multi delivers separation without compromise.
Complex Analytes Demand Complex Solutions — Meet CromCarb™ Multi
In today’s analytical and biopharmaceutical landscape, simple reverse phase retention is often insufficient.
Separation of charge variants, glycoforms, hydrophobic impurities, or complex biomolecular assemblies requires stationary phases that can exploit multiple interaction mechanisms simultaneously.
CromCarb™ Multi, based on advanced epoxy-activated graphitized carbon microspheres (NanoPak-M technology), enables true multimodal separations — combining hydrophobic, ionic, and affinity interactions in one powerful platform.
With fully customizable ligand attachment, ultra-stable carbon frameworks, and broad pH/temperature compatibility, CromCarb™ Multi empowers scientists to tackle the toughest separation challenges with unprecedented flexibility and precision.
The Science Behind Multimodal Mastery
CromCarb™ Multi utilizes precision-engineered epoxy-activated carbon microbeads designed to support customizable functionalization:
Unlike polymeric multimodal supports, CromCarb™ Multi combines bioinert behavior, low non-specific binding, and true hydrophobic plus electrostatic capture — in a fully scalable format.
Versatile Activation: Ready for covalent ligand coupling tailored to separation needs.
Full-Range Solvent and pH Compatibility: Operates in extreme mobile phases without degradation.
Precision Morphology: Uniform spherical packing reduces eddy diffusion and maximizes resolution.
|
Parameter
|
Specification
|
|---|---|
|
Particle Sizes
|
5 µm, 10 µm
|
|
Surface Chemistry
|
Epoxy-activated all-carbon
|
|
Functionalization
|
Customizable (IEX, hydrophobic, affinity)
|
|
Pore Size
|
Broadly tunable
|
|
pH Range
|
0–14
|
|
Temperature Stability
|
Up to 200°C
|
|
Ligand Attachment Options
|
Amine, Carboxyl, Hydroxyl, Sulfonate, etc.
|
Multimodal Retention — Without Multimodal Headaches
Simultaneous Hydrophobic and Ionic Interactions
Enhanced Selectivity for Complex Analytes
Ultra-Stable Across Harsh Mobile Phases
Scalability from Discovery to Production
CromCarb™ Multi in Action
Example Study Highlight:
Multimodal interaction studies demonstrated that CromCarb™ Multi enabled simultaneous ionic and hydrophobic capture of semaglutide variants under single gradient conditions — outperforming conventional HIC and IEC combinations.
A New Level of Efficiency, Sustainability, and Flexibility
|
Feature
|
CromCarb™ Multi
|
Silica Multimodal
|
Polymeric Multimodal
|
|---|---|---|---|
|
Stability at pH 0–14
|
✅ Excellent
|
❌ Poor
|
⚪ Good
|
|
Stability at 200°C
|
✅ Highly Flexible
|
⚪ Moderate
|
⚪ Moderate
|
|
Peak Symmetry
|
✅ Superior
|
⚪ Moderate
|
❌ Variable
|
|
Column Lifetime
|
✅ Extended
|
❌ Shorter
|
⚪ Moderate
|
Conclusion: CromCarb™ Multi doesn’t just mimic multimodal performance — it redefines it.
Simplify Complex Separations. Accelerate Innovation
Get periodic updates on promos and discounts as well as new products by subscribing to our email list.