Specifications Table
Product Name – LITHIUM ACETATE DIHYDRATE 99% AR
Quantity/Pack Size – 250 g
Form – Crystalline Powder
Grade – AR (Analytical Reagent)
Application – Synthesis, Buffers, Electrochemistry
Product Overview
Lithium Acetate Dihydrate 99% AR is a high-purity, water-soluble salt widely used in laboratory settings for its stability and versatility. This analytical reagent-grade compound offers consistent performance in synthesis reactions, buffer preparations, and electrochemical studies. Its crystalline powder form ensures easy handling and precise measurements, making it suitable for applications requiring accurate molar concentrations. The dihydrate form enhances solubility in aqueous solutions, facilitating efficient dissolution without residue. With a guaranteed 99% purity, this chemical meets stringent quality standards for reliable experimental results. The compound’s low toxicity profile and compatibility with most lab equipment further enhance its practicality. Whether used as a lithium source in organic synthesis or as an electrolyte in electrochemical cells, this product delivers reproducible outcomes. Store in a cool, dry place to maintain its integrity and extend shelf life.
FAQs
1. What is the solubility of Lithium Acetate Dihydrate in water?
Lithium Acetate Dihydrate is highly soluble in water, typically dissolving at concentrations exceeding 400 g/L at room temperature.
2. Can this compound be used in non-aqueous solvents?
While primarily water-soluble, it has limited solubility in polar organic solvents like methanol and ethanol under specific conditions.
3. What precautions should be taken during storage?
Store in a tightly sealed container away from moisture and incompatible substances to prevent hydration changes or contamination.
4. Is this product compatible with glassware?
Yes, it is compatible with standard borosilicate glassware and most plastic labware, but avoid prolonged contact with metals.
5. How does the AR grade differ from technical grade?
The AR grade offers higher purity (99%) with stricter impurity controls, making it suitable for analytical applications where precision is critical.