Palladium 5% on Carbon, PH type (wetted with ca 55% Water) is a metal-based catalyst widely used in organic compound hydrogenation reactions. This material plays a crucial role in accelerating chemical reactions without altering the fundamental structure of the substrate. It is commonly found in both chemical laboratories and industrial settings, where it is employed to enhance reaction efficiency and reduce processing time. Due to its high reactivity, it is particularly effective in reduction processes, especially in hydrogenation reactions involving hydrocarbons and aromatic compounds.
The unique properties of Palladium 5% on Carbon make it a preferred choice for various catalytic applications. Its high surface area significantly improves reaction efficiency, allowing for greater interaction with reactants. The powdered form of this catalyst facilitates easy absorption and distribution within solutions, enhancing its usability in different experimental setups. Additionally, its approximately 55% water content contributes to its stability under certain conditions, thereby extending its shelf life and usability. These characteristics make it a reliable and efficient option for laboratory use.
In Indonesian laboratories, Palladium 5% on Carbon is extensively used in chemical research, particularly in catalysis and organic synthesis. It is a vital component for institutions and research companies that require efficient and cost-effective chemical reactions. Its versatility and effectiveness make it a standard material in both academic and industrial research settings, supporting a wide range of chemical processes and experiments.
Advantages (TCI brochure)
- Highly active in many reactions.
- Almost no C-O hydrogenolysis in the presented diol synthesis.
TCI brochures (PDF)
- Precious Metal Catalysts on Activated Carbon for Heterogeneous Selective Hydrogenation 2025-03-14 · p. 1
- Hydrogenation Catalysts 2025-11-10 · p. 3
- Transition Metal Catalysts 2026-04-10 · p. 13
Related TCI products
- TCI P3303 7440-05-3 Palladium 75% on Carbon, PH type (wetted with ca 53% Water)
- TCI P3301 7440-05-3 Palladium 10% on Carbon, MA type (wetted with ca 53% Water)
- TCI P3300 7440-05-3 Palladium 5% on Carbon, M type (wetted with ca 55% Water)
- TCI P3299 7440-05-3 Palladium 10% on Carbon, M type (wetted with ca 55% Water)
- TCI P3298 7440-05-3 Palladium 5% on Carbon, LB type (wetted with ca 55% Water)
- TCI P3297 7440-05-3 Palladium 5% on Carbon, LA type (wetted with ca 55% Water)
- Organic synthesis reactions benefit from this catalyst due to its high efficiency in hydrogenation processes.
- Hydrocarbon reduction applications utilize its reactivity to facilitate complex chemical transformations.
- Aromatic compound hydrogenation is enhanced by the catalyst's ability to promote selective reductions.
- Catalytic hydrogenation in industrial settings relies on its stability and effectiveness in large-scale processes.
- Research and development in chemical laboratories depend on its reliability for consistent and reproducible results.
From the TCI brochure
- Debenzylation
- Aromatic nucleus hydrogenation
- Nitro groups
- Olefins
- Synthesis of alicyclic diol monomers for polyester and polycarbonate resins
| Brand | TCI |
|---|---|
| CAS number | 7440-05-3 |
| Molecular formula | — |
| Purity | — |
| Category | Chemistry > Catalysis and Inorganic Chemistry > Hydrogenation [Catalysis] |
| Pack sizes | As per supplier specifications |
| Physical form | Powder |
| Storage | Store in a cool, dry place away from moisture and direct sunlight |
Data from the TCI brochure
| Catalyst loading (aromatic nucleus hydrogenation example) | 5% (H2 ca. 4 MPa, IPA, ca. 140°C, 5 h) |
|---|
Source: TCI brochure RR208 (2025-03-14)
This catalyst should be stored in a cool, dry environment to maintain its stability and effectiveness. It is recommended to use airtight containers to prevent exposure to moisture, which can affect its performance. Due to its reactive nature, it should be handled with care, avoiding direct contact with skin or inhalation of dust. Proper ventilation is essential when working with this material to ensure a safe laboratory environment. It is important to keep it away from incompatible substances and to follow standard laboratory safety protocols when handling and using it.
—
