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Product Line: Pharmaceutical Chemicals

Salicylaldehyde azine

CAS 959-36-4

Molecular structure of Salicylaldehyde azine

CAS · 959-36-4

01

Product Overview

Salicylaldehyde azine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance: Light yellow powder
Assay: 99% min
Odor: Characteristic
Melt Point: 215–220℃
Loss weight: 0.5% max
03

Applications

1. Metal Chelating Agent and Ligand in Coordination Chemistry

● Salicylaldehyde azine is a well-known chelating ligand, capable of forming stable complexes with a variety of metal ions (Cu, Ni, Co, Zn, etc.).

● These metal-azine complexes are extensively studied for their:
Catalytic activity (oxidation, reduction, polymerization)
Magnetic and electronic properties
Structural diversity in supramolecular chemistry

2. Analytical Chemistry

● Salicylaldehyde azine丨959-36-4 is used as a reagent for metal ion detection and quantification.

● Salicylaldehyde azine forms colored or fluorescent complexes with transition metals, enabling:
Spectrophotometric assays
Colorimetric sensors
Complexometric titrations

3. Antimicrobial and Bioactive Agent

● Metal complexes derived from salicylaldehyde azine have shown antibacterial, antifungal, and antiparasitic activity.

● It is investigated as a potential bioactive scaffold in medicinal chemistry due to its ability to interact with biological macromolecules.

4. Organic and Inorganic Synthesis

● Acts as a building block or intermediate in the synthesis of more complex ligands, dyes, and heterocyclic compounds.

● Can be functionalized further for use in molecular sensors, coordination polymers, and metal-organic frameworks (MOFs).

5. Material Science and Nanotechnology

● Used to synthesize metal-containing nanomaterials with potential applications in:
Catalysis
Environmental remediation
Magnetic materials

04

Benefits

1. Strong Chelation and Coordination Properties

● The azine and phenolic groups provide multiple binding sites for coordination with metal ions, resulting in robust and often symmetrical metal-ligand complexes.

● These features are valuable for designing materials with predictable structures and properties.

2. Versatility and Functional Tunability

● The molecule can be easily modified at phenolic or azine positions, making it adaptable for a wide range of synthetic and functional applications.

3. Spectroscopic Utility

● Metal complexes exhibit distinctive UV-Vis absorption and fluorescence, useful in analytical sensing and photophysical studies.

4. Biological Potential

● Exhibits promising bioactivity in coordination with metals, offering potential routes for developing new antimicrobial agents or diagnostic probes.

5. Stability and Availability

● Chemically stable under standard laboratory conditions and relatively easy to synthesize from accessible starting materials, making it cost-effective and practical for research and industry use.

Conclusion

Salicylaldehyde azine丨959-36-4 is a valuable multifunctional compound widely used in coordination chemistry, analytical applications, material science, and bioinorganic research. Its ability to form stable complexes with various metals makes it essential for catalysis, sensing, and drug development. Combining simplicity of synthesis with rich chemical functionality, salicylaldehyde azine continues to play a central role in modern inorganic and supramolecular chemistry.

 

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05

Conclusion

A concise summary and suitability assessment for this product is available on request. Contact our team to discuss whether it fits your process and quality requirements.