Description
Specifications Table
| Product Name | Dichloro-[1,3-bis(Diisopropylphenyl)-2-imidazolidinylidene]-(3-Chloropyridyl)Palladium(II), 98% |
|---|---|
| Pack Size | 250 Mg, 1 Gms, 5 Gms |
| Form | Solid |
| Grade | 98% |
| Application | Cross-coupling reactions, Buchwald precatalyst |
Product Description
When precision matters in organic synthesis, this palladium catalyst delivers exceptional performance. Designed for cross-coupling reactions, it’s a go-to choice for researchers and chemists working on complex molecular assemblies. The 98% purity ensures minimal impurities, reducing side reactions and improving yield consistency.
This dichloropyridyl palladium catalyst is particularly effective in Buchwald-Hartwig amination and Suzuki-Miyaura coupling, making it indispensable in pharmaceutical and material science labs. Its stability and reactivity profile allow for versatile applications, from academic research to industrial-scale processes.
For those looking to buy palladium catalyst online, eqipped offers this high-grade product with reliable delivery across India. Whether you’re synthesizing novel compounds or optimizing existing protocols, this catalyst provides the reliability you need.
Upgrade your lab’s cross-coupling efficiency with this high-purity palladium catalyst today.
FAQs
What is the shelf life of this palladium catalyst?
When stored properly in a sealed container at room temperature, this catalyst maintains stability for up to 2 years.
Can this catalyst be used for large-scale reactions?
Yes, its high purity and consistent reactivity make it suitable for both small-scale research and larger industrial applications.
What safety precautions should be taken when handling this chemical?
Always use nitrile gloves, safety goggles, and work in a fume hood. Avoid inhalation and skin contact.
Is this catalyst compatible with air-sensitive reactions?
While stable under normal conditions, it’s recommended to handle it under inert atmosphere for air-sensitive applications.
How does this catalyst compare to other palladium catalysts?
Its unique imidazolidinylidene ligand structure enhances stability and reactivity, often outperforming traditional palladium catalysts in challenging coupling reactions.