Acetone D6, a deuterated variant of acetone, finds several important applications in scientific research and industry:
1. Nuclear Magnetic Resonance (NMR) Spectroscopy: Acetone D6 is widely used as a solvent in NMR spectroscopy due to its deuterium-labeled methyl groups. It provides a sharp, isolated signal in proton NMR spectra, making it an ideal internal reference standard for calibration and peak alignment.
2. Mass Spectrometry: Acetone D6 is employed as a reference and calibration standard in mass spectrometry for accurate mass determination and quantification. Its isotopic purity ensures precise results.
3. Reaction Mechanism Studies: Chemists use Acetone D6 in kinetic studies and reaction mechanism investigations. Its deuterium-labeled methyl groups can help elucidate reaction pathways and identify intermediate species.
4. Isotope Labeling: Acetone D6 serves as a source of deuterium atoms for the synthesis of deuterium-labeled organic compounds, which are valuable in pharmaceutical and biochemical research.
5. Solvent for Sensitive Compounds: Its high chemical stability and low impurity levels make Acetone D6 a suitable solvent for handling and dissolving sensitive compounds, such as organometallic complexes or air-sensitive reagents.
6. Hydrogen/Deuterium Exchange Studies: Researchers utilize Acetone D6 in studies involving hydrogen/deuterium exchange reactions to investigate protein folding, conformational changes, and dynamics.
7. Quality Control: Industries use Acetone D6 for quality control purposes, particularly in pharmaceutical and chemical manufacturing, where accurate measurements are crucial.
8. Environmental Testing: Acetone D6 can be employed in environmental studies to trace the movement and transformation of organic compounds in various ecosystems.
9. Materials Science: It is used in materials science research, including investigations into the properties and behavior of polymers and coatings.
10. Forensic Analysis: In forensic laboratories, Acetone D6 can be used in the analysis of volatile compounds and in the development of forensic analytical methods.
Overall, Acetone D6's unique isotopic properties and chemical stability make it a versatile tool in a wide range of scientific and industrial applications, contributing to advancements in various fields of research and analysis.
Acetone-d6
https://commonchemistry.cas.org/detail?cas_rn=666-52-4
Acetone-D6
https://pubchem.ncbi.nlm.nih.gov/substance/?source=chemidplus&sourceid=0000666524
ChemIDplus Chemical Information Classification
https://pubchem.ncbi.nlm.nih.gov/source/ChemIDplus
(2H6)Acetone
https://comptox.epa.gov/dashboard/DTXSID20216767
CompTox Chemicals Dashboard Chemical Lists
https://comptox.epa.gov/dashboard/chemical-lists/
(2H6)acetone
https://echa.europa.eu/substance-information/-/substanceinfo/100.010.514
(2H6)acetone
https://echa.europa.eu/information-on-chemicals/cl-inventory-database/-/discli/details/24368
ACETONE-D6
https://gsrs.ncats.nih.gov/ginas/app/beta/substances/B0N19B53H8
Acetone d6
http://www.ebi.ac.uk/chebi/searchId.do?chebiId=CHEBI:78217
ChEBI Ontology
http://www.ebi.ac.uk/chebi/userManualForward.do#ChEBI%20Ontology
Deuterated_acetone
https://en.wikipedia.org/wiki/Deuterated_acetone
GHS Classification Tree
http://www.unece.org/trans/danger/publi/ghs/ghs_welcome_e.html
SID 403401954
https://pubchem.ncbi.nlm.nih.gov/substance/403401954
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