ETHYL CYCLOHEXANE 99% For Synthesis | 3725D

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ETHYL CYCLOHEXANE 99% For Synthesis | 3725D

Ultra-pure Ethyl Cyclohexane 99% for synthesis, offering excellent solvent properties and low impurity levels.

Original price was: ₹1,250.00.Current price is: ₹875.00.

Description

Specifications Table

Product Name – ETHYL CYCLOHEXANE 99% For Synthesis
Quantity/Pack Size – 500 ml
Form – Liquid
Grade – For Synthesis
Application – Solvent, organic synthesis, chromatography

Product Overview

Ethyl Cyclohexane 99% is a high-purity, colorless liquid solvent designed for synthesis applications. Known for its excellent stability and low reactivity, it serves as an ideal medium for organic reactions, extractions, and chromatographic separations. The 99% purity ensures minimal interference from impurities, making it suitable for sensitive analytical procedures. Its low volatility and high boiling point provide consistent performance in laboratory settings. This solvent is compatible with a wide range of organic compounds, offering reliable solubility without degrading sample integrity. The synthesis-grade quality guarantees reproducibility in experimental results, while its non-corrosive nature extends the lifespan of lab equipment. Whether used as a reaction medium or for purification processes, Ethyl Cyclohexane delivers precision and reliability for demanding laboratory workflows.

FAQs

1. What is the boiling point of Ethyl Cyclohexane 99%?

The boiling point of Ethyl Cyclohexane 99% is approximately 131-132°C.

2. Is this solvent compatible with glassware and plastic containers?

Yes, it is generally compatible with borosilicate glass and most common lab plastics like HDPE and PTFE.

3. Are there any known impurities in this grade?

The 99% purity specification indicates trace impurities may include residual hydrocarbons or moisture, but these are minimized.

4. How should this solvent be stored for long-term use?

Store in a tightly sealed container in a cool, well-ventilated area away from ignition sources.

5. Can this be used as a substitute for cyclohexane in reactions?

While similar, the ethyl group may alter reaction kinetics; compatibility should be verified for specific applications.