Description
Specifications Table
| Product Name | Acetic-d3 Acid-d (for NMR Spectroscopy) 99.5 atom%D |
|---|---|
| Quantity/Pack Size | 10×0.75 ml, 10 ml |
| Form | Liquid |
| Grade | NMR Spectroscopy Grade |
| Application | NMR spectroscopy, deuterium labeling, research applications |
Product Description
Acetic-d3 Acid-d is a high-purity deuterated solvent specifically designed for NMR spectroscopy. With 99.5 atom%D, it ensures minimal proton interference, making it ideal for precise structural analysis in research and academic settings. Whether you’re a student, researcher, or educator, this solvent provides the clarity needed for accurate NMR data interpretation.
Deuterated acetic acid is widely used in chemical and biochemical research due to its ability to dissolve a variety of compounds while maintaining spectral purity. Its stability and consistency make it a preferred choice for laboratories conducting advanced spectroscopic studies.
When you buy Acetic-d3 Acid-d online from eqipped, you get a product that meets rigorous quality standards. Our packaging ensures stability and longevity, so you can focus on your experiments without worrying about solvent degradation.
Need high-purity NMR solvents for your lab? Order Acetic-d3 Acid-d today and experience precision in every spectrum.
FAQs
What is Acetic-d3 Acid-d used for?
It is primarily used as a solvent in NMR spectroscopy due to its deuterated nature, which minimizes proton signals for clearer spectral data.
Is this product suitable for academic research?
Yes, its high purity (99.5 atom%D) makes it ideal for research and educational applications where precision is critical.
How should I store Acetic-d3 Acid-d?
Store in a tightly sealed container in a cool, dry place, away from direct sunlight and heat sources.
Can I buy Acetic-d3 Acid-d in bulk?
Yes, eqipped offers flexible pack sizes, including 10×0.75 ml and 10 ml, to suit different research needs.
What makes deuterated acetic acid better than regular acetic acid for NMR?
Deuterated acetic acid reduces proton interference, providing cleaner NMR spectra for more accurate analysis.