Description
Specifications Table
| Product Name | Ibx Polystyrene 5 G | 8.55043.0005 | Merck |
|---|---|
| Quantity/Pack Size | 5 G |
| Form | Solid |
| Grade | Laboratory Grade |
| Application | Research, Polymer Studies, Material Science |
Product Description
IBX Polystyrene 5 G | 8.55043.0005 | Merck is a high-quality polymer-supported oxidation reagent developed for organic synthesis, combinatorial chemistry, and pharmaceutical research. Manufactured under stringent quality standards, it offers excellent purity, high chemical stability, and consistent performance for efficient laboratory synthesis.
This polymer-supported reagent is widely used in oxidation reactions, medicinal chemistry, parallel synthesis, and research involving solid-supported reagents. It is suitable for pharmaceutical companies, biotechnology laboratories, research institutes, universities, and industrial R&D facilities seeking efficient purification and simplified reaction workflows.
Merck IBX Polystyrene delivers dependable quality and reproducible results for organic synthesis and advanced chemical research.
FAQs
What is Ibx Polystyrene used for?
Ibx Polystyrene is primarily used in research applications, including polymer studies, material science, and synthesis experiments. Its high purity makes it ideal for accurate and reproducible results.
How should I store Ibx Polystyrene?
Store Ibx Polystyrene in a cool, dry place away from direct sunlight. Ensure the container is tightly sealed to prevent contamination or degradation.
Is Ibx Polystyrene safe to handle?
While generally safe, always follow standard lab safety protocols when handling Ibx Polystyrene. Wear appropriate protective gear and work in a well-ventilated area.
Can I buy Ibx Polystyrene in bulk?
Yes, eqipped offers Ibx Polystyrene in various pack sizes. Contact our support team for bulk ordering options and discounts.
What makes Ibx Polystyrene different from other polystyrene products?
Ibx Polystyrene is a laboratory-grade product from Merck, known for its high purity and consistency. This ensures reliable performance in research applications compared to industrial-grade alternatives.





