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About This Item
Empirical Formula (Hill Notation):
D2O
CAS Number:
Molecular Weight:
20.03
NACRES:
NA.21
PubChem Substance ID:
UNSPSC Code:
12142201
EC Number:
232-148-9
MDL number:
Technique(s):
NMR: suitable
Bp:
101.4 °C (lit.)
Product Name
Deuterium oxide, 99.9 atom % D, contains 0.75 wt. % 3-(trimethylsilyl)propionic-2,2,3,3-d4 acid, sodium salt
InChI key
XLYOFNOQVPJJNP-ZSJDYOACSA-N
InChI
1S/H2O/h1H2/i/hD2
SMILES string
[2H]O[2H]
isotopic purity
99.9 atom % D
form
liquid
contains
0.75 wt. % 3-(trimethylsilyl)propionic-2,2,3,3-d4 acid, sodium salt
technique(s)
NMR: suitable
bp
101.4 °C (lit.)
mp
3.8 °C (lit.)
Quality Level
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Application
- Analgesic biochemical research: Hydromorphone is used in biochemical research to assess its analgesic potency and side effects, providing insights into its therapeutic window and safety profile. This research supports the development of safer pain management strategies (Zimbelmann et al., 2024).
Other Notes
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Storage Class
10 - Combustible liquids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Regulatory Information
美国出口管控产品
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Structure of water and hydrophobic bonding in proteins. IV. The thermodynamic properties of liquid deuterium oxide.
Nemethy G and Scheraga HA.
J. Chem. Phys. , 41(3), 680-689 (1964)
The ionization constant of deuterium oxide from 5 to 50?.
Covington AK, et al.
The Journal of Physical Chemistry, 70(12), 3820-3824 (1966)
Using high-performance quantitative NMR (HP-qNMR?) for certifying traceable and highly accurate purity values of organic reference materials with uncertainties< 0.1%.
Weber M, et al.
Accreditation and Quality Assurance, 18(2), 91-98 (2013)
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
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
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