Atomfair lead acetate anhydrous C4H6O4Pb

Description Lead Acetate Anhydrous (CAS No. 6258-66-8) is a high-purity inorganic compound with the molecular formula C4H6O4Pb . Also known as Plumbous acetate or Lead diacetate , this white crystalline powder is widely utilized in laboratory research, industrial applications, and chemical synthesis. Its IUPAC name, lead(2+);diacetate , reflects its ionic structure, consisting of lead cations (Pb2+) and acetate anions (CH3COO-). This reagent-grade chemical is rigorously tested for purity and consistency, making it ideal for analytical procedures, electroplating, and specialized material synthesis. Due to its toxicity, proper handling and storage are essential. Available in sealed containers to ensure stability and prevent…

Description

Description

Lead Acetate Anhydrous (CAS No. 6258-66-8) is a high-purity inorganic compound with the molecular formula C4H6O4Pb. Also known as Plumbous acetate or Lead diacetate, this white crystalline powder is widely utilized in laboratory research, industrial applications, and chemical synthesis. Its IUPAC name, lead(2+);diacetate, reflects its ionic structure, consisting of lead cations (Pb2+) and acetate anions (CH3COO). This reagent-grade chemical is rigorously tested for purity and consistency, making it ideal for analytical procedures, electroplating, and specialized material synthesis. Due to its toxicity, proper handling and storage are essential. Available in sealed containers to ensure stability and prevent moisture absorption.

  • CAS No: 6258-66-8
  • Molecular Formula: C4H6O4Pb
  • Molecular Weight: 325
  • Exact Mass: 326.00326
  • Monoisotopic Mass: 326.00326
  • IUPAC Name: lead(2+);diacetate
  • SMILES: CC(=O)[O-].CC(=O)[O-].[Pb+2]
  • Synonyms: LEAD ACETATE, 301-04-2, Plumbous acetate, Lead diacetate, Salt of saturn

Application

Lead Acetate Anhydrous is primarily used in chemical research as a precursor for lead-based compounds and catalysts. It serves as a key reagent in electroplating solutions for depositing lead coatings on surfaces. In analytical chemistry, it is employed in qualitative tests for sulfide detection due to its reactivity with H2S. Additionally, it finds niche applications in dyeing and textile processing. Researchers also utilize it in studies involving heavy metal interactions and corrosion inhibition.

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