5-Pyrimidinecarboxylic Acid: Comprehensive User Guide
Table of Contents
1. Product Overview & Specifications
5-Pyrimidinecarboxylic Acid (CAS 37441-42-2) is a heterocyclic organic compound widely used in pharmaceutical and agrochemical research. Key specifications include:
Parameter | Specification |
---|---|
CAS Number | 37441-42-2 |
Molecular Formula | C5H4N2O2 |
Molecular Weight | 140.10 g/mol |
Purity | ≥98% (HPLC) |
Appearance | White to off-white crystalline powder |
Comparative Analysis with Alternatives
Product | Purity | Price (USD/g) | Key Advantage |
---|---|---|---|
5-Pyrimidinecarboxylic Acid | ≥98% | 25.00 | High solubility in polar solvents |
Pyrimidine-4-carboxylic Acid | ≥95% | 30.00 | Limited application scope |
Pyrimidine-2-carboxylic Acid | ≥97% | 28.00 | Lower thermal stability |
2. Applications & Use Cases
Pharmaceutical Industry
Used as a key intermediate in synthesizing kinase inhibitors and antiviral agents. Enhances drug bioavailability through structural modifications.
Agrochemical Research
Integral in developing herbicides and fungicides due to its ability to disrupt microbial metabolic pathways.
Organic Synthesis
Serves as a ligand in catalytic reactions and building block for functionalized pyrimidine derivatives.
Academic Research
Widely utilized in studying nucleotide analogs and enzyme inhibition mechanisms.
3. Customer Case Studies
Case Study 1: Oncology Drug Development
Client: Top 10 Global Pharma Company
Application: Synthesized a novel tyrosine kinase inhibitor for non-small cell lung cancer (NSCLC).
Result: Achieved 92% yield in final API synthesis, reducing production costs by 18%.
Case Study 2: Herbicide Formulation
Client: Leading Agrochemical Manufacturer (Europe)
Application: Developed a broad-spectrum herbicide with 5-Pyrimidinecarboxylic Acid as primary active ingredient.
Result: Field trials showed 98% weed suppression vs. 85% for previous formulation.
Case Study 3: University Research
Client: Ivy League University Chemistry Department
Application: Investigated metal-organic frameworks (MOFs) using the compound as coordination ligand.
Result: Published in Nature Chemistry with 3x improved catalytic efficiency.
4. Inquiry & Contact
Request pricing, samples, or technical documentation:
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