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Specifications
| Appearance: | Light yellow to yellow powder |
| Assay: | 98% min |
| Loss on drying: | 0.5% max |
Applications
1. Pharmaceutical Intermediates
Used in the synthesis of nucleoside analogs, antiviral, anticancer, and anti-inflammatory drugs.
Forms the core structure of certain enzyme inhibitors and metabolic modulators.
2. Agrochemicals
Intermediate in the production of plant growth regulators and herbicides.
Serves as a base for designing biologically active heterocycles used in crop protection.
3. Organic Synthesis
Employed as a versatile heterocyclic scaffold in medicinal chemistry and material science.
Acts as a precursor for compounds that mimic purines or pyrimidines in DNA/RNA research.
4. Coordination Chemistry
Can serve as a ligand in metal coordination complexes, useful in catalysis and material development.
Benefits
Versatile Building Block: Useful for a wide range of synthetic transformations in drug and agrochemical design.
Biocompatible Core Structure: Pyrimidine derivatives are well tolerated in biological systems.
Reactive Functional Groups: Hydroxyl groups at positions 4 and 6 provide reactive sites for derivatization.
Supports Innovation: Widely used in the development of novel bioactive molecules and functional materials.
Conclusion
4,6-Dihydroxypyrimidine (CAS 1193-24-4) is a highly useful heterocyclic intermediate with significant applications in pharmaceuticals, agrochemicals, and organic synthesis. Its role as a building block for nucleoside analogs, enzyme inhibitors, and bioactive heterocycles makes it essential for modern drug discovery and material science research.

