Description
Specifications Table
| Product Name | Silica Gel HF254 for TLC, 325mesh, with Fluorescent Indicator without CaSO4 |
|---|---|
| Pack Size | 500 Gms, 5 Kg |
| Form | Powder |
| Grade | For Thin-Layer Chromatography (TLC) |
| Application | Chromatography, research, education |
Product Description
Silica Gel HF254 is a premium-grade adsorbent designed specifically for thin-layer chromatography (TLC). With a fine 325 mesh particle size and a built-in fluorescent indicator, this silica gel ensures high-resolution separation and easy visualization under UV light. The absence of calcium sulfate (CaSO4) makes it ideal for sensitive applications where purity is critical.
This product is widely used in laboratories, educational institutions, and research facilities for qualitative and quantitative analysis. Whether you’re a student learning chromatography techniques or a researcher conducting advanced experiments, Silica Gel HF254 provides reliable and consistent results.
At eqipped, we ensure that every batch of Silica Gel HF254 meets stringent quality standards, so you can trust its performance in your experiments. The fluorescent indicator simplifies spot detection, making your workflow more efficient.
Need high-quality silica gel for your TLC experiments? Buy Silica Gel HF254 online today for accurate and reproducible results.
FAQs
What is the particle size of Silica Gel HF254?
The particle size is 325 mesh, which is ideal for high-resolution TLC applications.
Does this silica gel contain a fluorescent indicator?
Yes, it includes a fluorescent indicator that glows under UV light (254 nm) for easy spot detection.
Is this product suitable for educational use?
Absolutely. It is commonly used in universities and colleges for teaching chromatography techniques.
Can I use this for quantitative analysis?
Yes, its high purity and consistent performance make it suitable for both qualitative and quantitative TLC.
How should I store Silica Gel HF254?
Store in a tightly sealed container in a dry environment to prevent moisture absorption.