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Sodium hydrate-[d]

General Information
Catalog: BLP-003521
CAS: 14014-06-3
Molecular Formula: DNaO
Molecular Weight: 41.00
Chemical Structure
Sodium hydrate-[d]
Synonyms 5% NaOD; Sodium hydroxide, deuterated; Sodium Hydroxide-d; Deuterated Sodium Hydroxide; Sodium Deuteroxide (40% w/w in D2O)
IUPAC Name Sodium Deuteroxide
Related CAS 1310-73-2 (unlabelled)
Isomeric SMILES [2H][O-].[Na+]
Canonical SMILES [OH-].[Na+]
InChI InChI=1S/Na.H2O/h;1H2/q+1;/p-1/i/hD
InChI Key HEMHJVSKTPXQMS-DYCDLGHISA-M
Boiling Point 100 °C at 760 mmHg
Purity ≥ 99% atom D
Density 1.46 g/cm3
Solubility Fully miscible in Water
Appearance Colorless liquid

Sodium hydrate-[d], also known as sodium deuteroxide, is a versatile chemical compound with numerous significant applications across various disciplines. Here are key applications of sodium hydrate-[d] presented with a high degree of perplexity and burstiness:

Isotopic Labeling in Research: Widely utilized in isotopic labeling for NMR spectroscopy, sodium hydrate-[d] plays a pivotal role in enhancing the precision of molecular structure and dynamics studies. By incorporating deuterium atoms, researchers can delve into the complexities of biological molecules and unravel intricate reaction mechanisms with heightened clarity.

Deuterium Exchange Reactions: In the realms of organic and inorganic chemistry, sodium hydrate-[d] functions as a primary deuterium source for exchange reactions, enabling chemists to introduce deuterium at specific molecular sites. This process facilitates in-depth studies of reaction pathways, with deuterium-labeled compounds serving as crucial tools for kinetic analyses and mechanistic explorations.

Pharmaceutical Synthesis: An indispensable component in the synthesis of deuterium-labeled pharmaceutical compounds, sodium hydrate-[d] plays a key role in pharmacokinetic studies aimed at monitoring drug absorption, distribution, metabolism, and elimination. Insight gained from these studies can inform improvements in drug design and contribute to the advancement of personalized medicine.

Material Science: Within the realm of material science, sodium hydrate-[d] functions as a vital reagent in synthesizing deuterated polymers and materials. These deuterated materials are particularly valuable for neutron scattering studies, offering enhanced contrast compared to hydrogenated counterparts. This application facilitates investigations into polymer structures and dynamics, ultimately driving the development of cutting-edge materials.

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