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2-Methylpropane-[d10]

General Information
Catalog: BLP-010419
CAS: 19170-96-8
Molecular Formula: C4D10
Molecular Weight: 68.18
Chemical Structure
2-Methylpropane-[d10]
Description 2-Methylpropane-[d10] is the labelled analogue of 2-Methylpropane. It has a role as a food propellant and a refrigerant.
Synonyms 2-Methylpropane D10; Propane-1,1,1,2,3,3,3-d7, 2-(methyl-d3)-; Trimethylmethane-d10; iso-butane-d10; 1,1-Dimethylethane-d10
IUPAC Name 1,1,1,2,3,3,3-heptadeuterio-2-(trideuteriomethyl)propane
Related CAS 75-28-5 (unlabelled)
Canonical SMILES CC(C)C
InChI InChI=1S/C4H10/c1-4(2)3/h4H,1-3H3/i1D3,2D3,3D3,4D
InChI Key NNPPMTNAJDCUHE-LSURFNHSSA-N
Boiling Point -12°C
Purity ≥98%; ≥98% atom D
Solubility Soluble in Water
Appearance Colorless Gas
Storage Store at 2-8°C

2-Methylpropane-[d10] is a deuterated compound, variously utilized in chemical and bioscience research. Here are some key applications of 2-Methylpropane-[d10]:

NMR Spectroscopy: 2-Methylpropane-[d10] is often used as a solvent or reference standard in nuclear magnetic resonance (NMR) spectroscopy. Due to its deuterated nature, it provides a clear background in NMR spectra, free from proton signals that could interfere with analysis. This makes it ideal for studying structural and dynamic properties of proton-containing molecules.

Isotopic Labeling Studies: In biochemical research, 2-Methylpropane-[d10] can be used for isotopic labeling experiments. By incorporating this compound, scientists can trace metabolic pathways and study isotopic exchange processes in living organisms. Such labeling helps in understanding metabolic dynamics and enzyme mechanisms.

Physical Chemistry Research: The compound is valuable in physical chemistry studies where researchers explore reaction kinetics and thermodynamics. Its isotopic substitution allows scientists to investigate the impact of deuterium on reaction rates and energy profiles. These studies provide insights into isotope effects and molecular interactions.

Mass Spectrometry: 2-Methylpropane-[d10] is utilized as an internal standard or calibrant in mass spectrometry analyses. The deuterated form assists in accurate quantification of analytes by compensating for matrix effects and instrument variability. This enhances precision and reliability in the identification and quantification of compounds in complex mixtures.

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