Specifications Table
Product Name – Aluminium isopropoxide, 99.99%, (trace metal basis)
Quantity/Pack Size – 10GR, 50GR, 250GR
Form – Powder
Grade – 99.99% (trace metal basis)
Application – Catalyst, chemical synthesis, material research
Product Overview
Aluminium isopropoxide is a high-purity chemical compound with a minimum assay of 99.99% on a trace metal basis, making it ideal for demanding laboratory applications. This white, crystalline powder is highly soluble in organic solvents, ensuring ease of use in various chemical processes. Its exceptional purity minimizes contamination risks, providing reliable and consistent results in research and development environments. The compound is commonly utilized as a catalyst in organic synthesis, particularly in esterification and transesterification reactions, due to its strong Lewis acid properties. Additionally, it serves as a precursor in the production of advanced materials, including ceramics and specialty coatings. The fine particle size and high reactivity of this aluminium isopropoxide enhance its performance in chemical transformations. Proper handling and storage are essential to maintain its stability and purity, as it is sensitive to moisture and should be stored in a cool, dry environment.
FAQs
1. What is the chemical formula of aluminium isopropoxide?
Aluminium isopropoxide has the chemical formula Al[OCH(CH3)2]3, often written as Al(OiPr)3.
2. Is this aluminium isopropoxide suitable for use in organic synthesis?
Yes, this 99.99% pure aluminium isopropoxide is highly suitable for organic synthesis due to its high reactivity and low impurity levels.
3. How should aluminium isopropoxide be stored to maintain its purity?
Store in an airtight container in a cool, dry place, away from moisture and incompatible substances.
4. What are the safety precautions when handling aluminium isopropoxide?
Wear protective gloves, goggles, and lab coat. Avoid inhalation and contact with skin or eyes. Use in a well-ventilated area.
5. Can this aluminium isopropoxide be used as a catalyst in esterification reactions?
Yes, it is commonly used as a catalyst in esterification and transesterification reactions due to its Lewis acid properties.