SiliaCat Heterogeneous Catalysts Portfolio
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SiliaCat Dpp-Pd (R390-100) |
Structure |
 |
Brief Description |
The significant costs associated with precious metal catalysts and their tendency to remain in organic products has generated interest for solutions that increase reactivity and can enable the recovery and reuse of these metals. SiliaCat DPP-Pd is a unique diphenylphosphine palladium (II) heterogeneous catalyst made from a leach-resistant organoceramic matrix. |
Typical Applications |
Suzuki, Heck, Sonogashira, Kumada, Stille |
SiliaCat Typical Characteristics |
Color |
Yellow |
Endcapping |
Yes |
Molecular Loading |
≥ 0.2 mmol/g |
Typical Tap Density |
415 g/L |
Solvent Compatibility |
All solvents, aqueous and organic |
Prolonged Storage |
Keep dry |
see formats & prices |
SiliaCat Pd0 (R815-100) |
Structure |
 |
Brief Description |
SiliaCat Pd0 is a new series of patent-protected sol–gel-entrapped Pd nanocatalysts. It is made from highly dispersed Pd nanoparticles (uniformly in the range 4.0–6.0 nm) encapsulated within an organosilica matrix. |
Typical Applications |
Suzuki, Heck Sonogashira, Kumada, Stille, Selective debenzylation, Selective hydrogenation |
SiliaCat Typical Characteristics |
Color |
Dark brown to black |
Endcapping |
Yes |
Molecular Loading |
- |
Typical Tap Density |
- |
Solvent Compatibility |
All solvents, aqueous and organic |
Prolonged Storage |
Keep cool (< 8 °C) Under Argon |
see formats & prices |
SiliaCat Pt0 (R820-100) |
Structure |
 |
Brief Description |
SiliaCat Pt0 is made of organosilica physically doped with nanostructured platinum (0), and is both stable and efficient. This catalyst was successfully prepared by a novel and simple sol-gel route. In the new procedure, Pt nanoparticles (uniformly in the range 1.7–3.15 nm) are encapsulated via an alcohol-free sol-gel process typical of enzyme sol-gel encapsulation. |
Typical Applications |
Selective reduction of nitroarenes, Hydrosilylation |
SiliaCat Typical Characteristics |
Color |
Dark brown to black |
Endcapping |
Yes |
Molecular Loading |
- |
Typical Tap Density |
- |
Solvent Compatibility |
All solvents, aqueous and organic |
Prolonged Storage |
Keep dry Under Argon |
see formats & prices |
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