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Bismuth Acetate (chemical formula...
HM2332
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Bismuth Acetate (chemical formula Bi(CH3COO)3) is a coordination complex mainly used as a catalyst in organic synthesis. Heeger Materials is a professional supplier and manufacturer of high-quality Bismuth Acetate, offering competitive prices and customized solutions to meet specific requirements.
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| Molecular Formula | Bi(CH3COO)3 |
| Purity | 4N|99.99% |
| CAS | 22306-37-2 |
| Available Forms | powder |
Bismuth Acetate (Bi(CH3COO)3) can be hydrolyzed by reaction with water vapor in the air to form bismuth acetate in alkaline form, so it must be sealed and kept dry. When heated, it will decompose to bismuth oxyacetate (BiOCH3COO), further decompose to bismuth oxycarbonate (Bi2O2CO3), and finally decompose to bismuth trioxide (Bi2O3) at high temperatures. HM can supply low-price Bismuth Acetate with a purity of up to 99.99%.
Heeger Materials Inc., a professional supplier, and manufacturer of high-quality Semiconductor Materials including Bismuth Acetate (Bi(CH3COO)3), leverages extensive expertise in supply and export to offer competitive prices. We provide customized solutions to meet specific requirements, ensuring exceptional quality and customer satisfaction.
Heeger Materials Inc. was established in 2016 in Colorado, USA. We are a specialized supplier of premium-grade metals, alloys, ceramics, powders, and various other materials catering to research, development, and large-scale industrial production in scientific and industrial sectors.
Bismuth Acetate | Bi(CH3COO)3 | CAS 22306-37-2 belongs to the semiconductor material and precursor range and is selected for controlled composition, purity, chemical form, trace impurities and documentation for electronic-material research or processing. It is commonly used in electronic and optoelectronic material synthesis, thin-film precursor studies, transparent conductive materials, laboratory research and process development. When requesting a quote, confirm chemical formula or composition, purity, anhydrous or hydrate form when applicable, trace impurity limits, quantity, documentation, storage and packaging.
For material comparison or adjacent product forms, browse semiconductor materials, high purity materials and deposition materials.
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