Description
Specifications Table
| Product Name | Rink Amide Resin (100-200 Mesh) | 8.55001.1000 | Merck |
|---|---|
| Pack Size | 1 KG |
| Form | Resin Beads |
| Grade | Laboratory Grade |
| Application | Peptide Synthesis, Solid-Phase Chemistry |
Product Description
When it comes to peptide synthesis, the quality of your resin can make or break your results. Rink Amide Resin (100-200 Mesh) from Merck is a trusted choice for researchers and chemists who demand reliability in solid-phase synthesis. This high-performance resin offers excellent loading capacity and stability, ensuring efficient coupling and minimal side reactions.
Whether you’re working in academic research, pharmaceutical development, or biotech applications, this resin provides the consistency needed for reproducible results. The 100-200 mesh size ensures optimal flow characteristics, making it compatible with both manual and automated synthesis systems.
At eqipped, we understand the importance of sourcing premium lab supplies without compromise. That’s why we offer this Merck resin at competitive prices, backed by fast shipping across India. If you’re looking to buy Rink Amide Resin online, you’ll find a seamless purchasing experience with us.
Upgrade your peptide synthesis workflow with Merck’s Rink Amide Resin. Order now and experience the difference in quality.
FAQs
What is the mesh size of this Rink Amide Resin?
This resin has a 100-200 mesh size, which is ideal for most solid-phase synthesis applications.
Can this resin be used for automated peptide synthesizers?
Yes, the uniform bead size makes it compatible with both manual and automated synthesis systems.
What is the typical loading capacity of this resin?
Merck’s Rink Amide Resin typically offers a loading capacity of 0.5-0.8 mmol/g, depending on the specific batch.
How should I store this resin to maintain its quality?
Store the resin in a tightly sealed container at room temperature, protected from moisture and light.
Is this resin suitable for Fmoc chemistry?
Absolutely. This resin is designed for Fmoc-based peptide synthesis, ensuring efficient coupling and deprotection steps.





