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Specifications of Bis(2-aminoacetoxy)copper丨CAS 13479-54-4
|
Property |
Specification |
|
Appearance |
Blue powder |
|
Assay |
98.5% min |
|
Cu |
27.2% min |
|
N |
11.5–13.0% |
|
As |
3 mg/kg max |
|
Pb |
3 mg/kg max |
|
Loss on Drying |
7.0% max |
Overview
Bis(2-aminoacetoxy)copper丨CAS 13479-54-4 is a copper(II) complex with glycine-derived ligands. The presence of aminoacetate (glycine anion) as a bidentate ligand provides both nitrogen and oxygen coordination sites, forming a stable chelate with copper. Such complexes are studied for their biological activity, metal ion transport, and catalytic properties.
Applications of Bis(2-aminoacetoxy)copper丨CAS 13479-54-4
1. Biochemistry and Coordination Chemistry Research
√ Model Compound for Copper Enzymes
● Mimics the active sites of copper-containing enzymes, such as oxidases and oxygenases.
● Used in studying electron transfer, coordination behavior, and catalytic oxidation reactions.
√ Chelation Studies
● Serves as a model to explore how amino acids coordinate with metal ions, aiding in understanding metalloprotein interactions.
2. Catalysis
● Acts as a homogeneous catalyst or catalyst precursor in various organic oxidation or coupling reactions.
● Effective in oxidative transformations and cross-coupling under mild conditions.
3. Antimicrobial and Bioactive Studies
● Copper(II) complexes with amino acid ligands often display antibacterial, antifungal, and antioxidant properties.
● Potential use in the development of antimicrobial coatings, preservatives, or therapeutic agents.
4. Material Science and Sensing
● Potential use in the fabrication of functional materials with metal-based coordination properties.
● Could be explored in the design of chemosensors for amino acids, metal ions, or biomolecules due to its chelating nature.
Benefits of Bis(2-aminoacetoxy)copper丨CAS 13479-54-4
√ Stable Coordination Complex
● The bidentate ligands form strong chelate rings, improving the thermal and chemical stability of the complex.
√ Bio-Mimetic Utility
● Useful in simulating metalloproteins, making it a powerful tool in bioinorganic chemistry.
√ Mild Catalytic Activity
● Offers selectivity and efficiency in catalytic reactions involving oxidative or ligand-exchange processes.
√ Biocompatibility Potential
● Built from glycine, a naturally occurring amino acid, making it of interest for biomedical or pharmaceutical applications with reduced toxicity.
Conclusion
Bis(2-aminoacetoxy)copper丨CAS 13479-54-4 is a versatile copper(II) complex with valuable roles in coordination chemistry, bioinorganic research, and catalysis. Its unique structure-incorporating amino acid ligands-makes it useful both in academic and potentially industrial settings, particularly for biological modeling, oxidation catalysis, and antimicrobial exploration.

