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Specifications
| Appearance | Green powder |
| Assay (C10H14NiO4 dried base) | 97% min |
| Nickel | 22.1% min |
| Water | 3% max |
Transport Information
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Specification |
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UN Number |
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Class |
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H.S. Code |
2914190090303 |
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Stability & Reactivity |
The product is chemically stable under standard ambient conditions. |
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Storage |
Tightly closed. Dry. hygroscopic |
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Condition to Avoid |
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Package |
Manufacturing Information
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Parameter |
Specification |
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Capacity |
10MT/month |
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Frequency |
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Main Export Countries |
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Capacity/Batch |
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Experience |
Production since 2015 |
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Stock |
Applications
Nickel acetylacetonate (CAS 3264-82-2) is an organometallic complex widely used as a catalyst, precursor, and reagent in coordination chemistry, materials science, and industrial synthesis. It serves as a versatile source of nickel for preparing thin films, nanomaterials, and metal-organic frameworks (MOFs) through techniques such as chemical vapor deposition (CVD) and sol–gel processes. In catalysis, it is employed in hydrogenation, polymerization, cross-coupling, and oxidation reactions, where it acts as a homogeneous or heterogeneous catalyst component. Nickel acetylacetonate also finds application in the synthesis of nickel-based coordination complexes and as a stabilizer or curing agent in polymer chemistry. Its volatility and solubility in organic solvents make it particularly suitable for controlled metal deposition and surface modification in electronic and optical material fabrication.
Benefits
The advantages of nickel acetylacetonate stem from its chemical stability, solubility, and versatility as a nickel source. It provides a consistent and controllable release of nickel ions under mild conditions, allowing for uniform deposition in thin-film applications and high catalytic efficiency in organic transformations. The compound's chelated acetylacetonate ligands stabilize the nickel center, preventing premature oxidation or decomposition, which enhances its performance in both laboratory and industrial environments. Additionally, its compatibility with various organic solvents and reaction media facilitates easy integration into diverse chemical processes. Nickel acetylacetonate also supports the development of environmentally friendly catalytic systems by reducing the need for harsh reagents and enabling efficient metal recycling.
Conclusion
Nickel acetylacetonate is a multifunctional compound that bridges coordination chemistry, catalysis, and advanced materials synthesis. Its stability, reactivity, and adaptability make it indispensable for producing nickel-based catalysts, coatings, and nanomaterials with precise structural control. By combining efficiency, scalability, and chemical robustness, nickel acetylacetonate continues to play a central role in modern chemical research and industrial innovation, particularly in catalysis, materials engineering, and sustainable manufacturing processes.

