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MilliporeSigma

756822

Sigma-Aldrich

Deuterium oxide

filtered, 99.8 atom % D

Synonym(s):

Deuterated water, Heavy water, Water-d2

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About This Item

Empirical Formula (Hill Notation):
D2O
CAS Number:
Molecular Weight:
20.03
EC Number:
MDL number:
UNSPSC Code:
12352303
PubChem Substance ID:
NACRES:
NA.12
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Quality Level

isotopic purity

99.8 atom % D

form

liquid

technique(s)

HPLC: suitable
bio NMR: suitable
protein expression: suitable

bp

101.4 °C (lit.)

mp

3.8 °C (lit.)

density

1.107 g/mL at 25 °C

application(s)

electronics
pharmaceutical

storage temp.

room temp

SMILES string

[2H]O[2H]

InChI

1S/H2O/h1H2/i/hD2

InChI key

XLYOFNOQVPJJNP-ZSJDYOACSA-N

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General description

Deuterium oxide filtered, 99.8 atom % D is a high-purity isotope product. Produced by Sigma-Aldrich, we are committed to providing quality isotope products and a reliable supply chain. Available in industrial and pre-pack quantities.

Application


- Utilized in specialized chemical manufacturing
- Suitable for non-GMP pharmaceutical applications

Features and Benefits

Features
- High isotopic purity with 99.8 atom % D
- Filtered for enhanced quality
- Suitable for industrial and pre-pack quantities
- Reliable supply chain from SIGMA-ALDRICH®

Benefits
- Ensures consistent isotopic composition
- Versatile for various industrial applications
- Supports pharmaceutical synthesis
- High-quality product for specialized chemical processes

Packaging

This product may be available from bulk stock and can be packaged on demand. For information on pricing, availability and packaging, please contact Stable Isotopes Customer Service.

Legal Information

SIGMA-ALDRICH is a registered trademark of Merck KGaA, Darmstadt, Germany

Storage Class

12 - Non Combustible Liquids

wgk_germany

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable


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Liset Westera et al.
Blood, 122(13), 2205-2212 (2013-08-16)
Quantitative knowledge of the turnover of different leukocyte populations is a key to our understanding of immune function in health and disease. Much progress has been made thanks to the introduction of stable isotope labeling, the state-of-the-art technique for in
Frank Grüne et al.
Anesthesiology, 120(2), 335-342 (2013-09-07)
Hyperventilation is known to decrease cerebral blood flow (CBF) and to impair cerebral metabolism, but the threshold in patients undergoing intravenous anesthesia is unknown. The authors hypothesized that reduced CBF associated with moderate hyperventilation might impair cerebral aerobic metabolism in
Lars Holm et al.
American journal of physiology. Endocrinology and metabolism, 304(8), E895-E907 (2013-02-21)
A method to determine the rate of protein breakdown in individual proteins was developed and tested in rats and confirmed in humans, using administration of deuterium oxide and incorporation of the deuterium into alanine that was subsequently incorporated into body
Raili Pönni et al.
Carbohydrate polymers, 93(2), 424-429 (2013-03-19)
During various processing treatments, the accessibility of cellulose in cellulosic fibers reduces, which is often interpreted as cellulose microfibril aggregation. This affects the reactivity of cellulose in further processing to novel cellulosic products such as nanocellulose. In this study, the
Takhar Kasumov et al.
American journal of physiology. Heart and circulatory physiology, 304(9), H1201-H1214 (2013-03-05)
Traditional proteomics provides static assessment of protein content, but not synthetic rates. Recently, proteome dynamics with heavy water ((2)H2O) was introduced, where (2)H labels amino acids that are incorporated into proteins, and the synthesis rate of individual proteins is calculated

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