Product Description
4.5-Imidazoledicarboxylic acid、570-22-9
AI Product Description
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4,5-Imidazoledicarboxylic acid is a specialized heterocyclic organic compound characterized by an imidazole ring substituted with two carboxyl groups at the 4 and 5 positions. With the molecular formula C₅H₄N₂O₄ and a molecular weight of approximately 172.10 g/mol, this substance serves as a critical building block in advanced materials science and pharmaceutical research. Its standard CAS Registry Number is 36836-90-3, which ensures precise identification across global chemical databases and supply chains. The compound typically appears as a white to off-white crystalline powder, exhibiting solubility properties that vary depending on pH levels, generally dissolving well in alkaline solutions while remaining less soluble in neutral water or organic solvents.
The primary utility of 4,5-imidazoledicarboxylic acid lies in its role as a ligand for the synthesis of Metal-Organic Frameworks (MOFs). Due to its rigid structure and dual coordination sites, it effectively bridges metal ions to create porous networks with high surface areas, making it invaluable for gas storage applications such as hydrogen and carbon dioxide capture. Furthermore, its thermal stability and chemical robustness make it suitable for developing functional materials used in catalysis and separation technologies. In the pharmaceutical sector, derivatives of this dicarboxylic acid are explored for their potential bioactivity, including antimicrobial and anticancer properties, although most applications remain in the experimental or pre-clinical stages.
Researchers also utilize this molecule in the development of fluorescent probes and sensors, leveraging the electronic properties of the imidazole core. Its ability to form stable complexes allows for tailored material design in nanotechnology. As demand grows for sustainable energy solutions and targeted drug delivery systems, the versatility of 4,5-imidazoledicarboxylic acid continues to expand. It is essential for chemists to handle this reagent with appropriate safety precautions, adhering to standard laboratory protocols regarding dust inhalation and skin contact. Overall, this compound represents a pivotal intermediate in the transition from basic organic chemistry to complex, high-performance functional materials, bridging the gap between fundamental synthesis and industrial application.