6-Amino-1,3-Dimethyluracil (CAS: 6642-31-5) is a high-purity chemical intermediate meticulously engineered for advanced synthesis in the pharmaceutical, chemical, and plastics industries. Characterized by its off-white to light yellow powder form and a chromatographic purity exceeding 99%, this versatile compound serves as a critical building block for synthesizing complex organic structures and enhancing product stability.
Beyond its role as a synthesis intermediate, it is widely utilized as a premium calcium and zinc stabilizer. By forming stable complexes with metal ions, it prevents undesirable coloration and degradation, significantly improving the initial coloring, whiteness, and long-term stability of end-products in cosmetics, food processing, and high-performance plastic applications.
| Product Name | 6-Amino-1,3-Dimethyluracil | CAS Number | 6642-31-5 |
|---|---|---|---|
| Molecular Formula | C6H9N3O2 | Molecular Weight | 155.15 |
| Appearance | Off-white to light yellow powder | Chromatographic Purity | ≥99.0% |
| Loss on Drying | ≤1.0% | Melting Point | 295℃ (decomposes) |
| EINECS No. | 229-662-0 | Packaging | 25Kg/bag (Customizable) |
With purity levels ≥99%, our product ensures minimal interference in complex chemical reactions, safeguarding final product integrity.
Optimized for use as a calcium-zinc stabilizer to prevent discoloration and enhance long-term product durability.
Ideal starting material for synthesizing dyes, polymers, fragrances, and pharmaceutical intermediates due to its nucleophilic amino unit.
Specifically improves initial coloring and whiteness in industrial plastics and commercial chemical products.
Acts as a key reactant, drug carrier, or excipient to improve the bioavailability and safety of pharmaceutical compounds.
Rigorous monitoring of particle size and solubility to meet the exact technical requirements of research and industry.
Robust logistics and production scheduling to ensure consistent, on-time delivery of raw materials.
Controlled manufacturing environments to maintain compound stability and reactivity.
Strict batch-to-batch consistency checks utilizing advanced chromatographic purity testing.
Tailored packaging and particle size specifications to fit your specific industrial application.
Expert guidance on inert gas storage to prevent enamine unit decomposition.
Collaborative support for synthesizing new dyes, polymers, and pharmaceutical intermediates.
| Performance Metric | Standard Grade | GX Premium Grade |
|---|---|---|
| Chemical Purity | 95% - 97% | ≥99.0% |
| Initial Color Stability | Moderate | Excellent / High Whiteness |
| Reaction Yield Rate | Standard | High (Low Impurities) |
| Medical Application | Limited | Fully Compatible |
| Storage Life | Standard | Extended (via Optimized Process) |
It acts as a calcium and zinc stabilizer by forming complexes with metal ions, which prevents unwanted chemical reactions that cause discoloration, thereby increasing the whiteness and thermal stability of the final product.
Due to the reactivity of the enamine unit, it should be stored in a cool, dry, and ventilated place, away from sunlight and fire, preferably under an inert gas atmosphere to prevent decomposition.
Yes, it is a key raw material for medical production, used to synthesize drug intermediates, serve as drug carriers, or act as excipients to enhance bioavailability and therapeutic efficacy.
Its amino unit possesses nucleophilicity, allowing it to undergo condensation reactions with aldehyde compounds to produce imine derivatives, making it ideal for creating dyes and polymers.
It is particularly effective in the plastics industry, cosmetics, food processing, and the manufacture of textiles and daily chemical products where long-term stability is required.
We guarantee a chromatographic purity of ≥99.0%, ensuring that impurities do not interfere with sensitive synthesis reactions or compromise the quality of the final chemical product.