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ETHANOL-D

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ETHANOL-D Basic information

Product Name:
ETHANOL-D
Synonyms:
  • Ethanol-d,99 atom % D
  • Ethanol-d,for NMR,99.5+ atom % D
  • Ethanol-dEthyl alcohol-d
  • ETHANOL-D1 DEUTERATION DEGREE MAGNISOLV(
  • Ethan(ol-d) 98 atoM % D
  • Ethanol-d1 99atom%D
  • Ethanol-D1 deuteration degree min. 99.5% for NMR spectroscopy MagniSolv
  • MONODEUTERO ETHANOL
CAS:
925-93-9
MF:
C2H5DO
MW:
47.07
EINECS:
213-128-9
Mol File:
925-93-9.mol
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ETHANOL-D Chemical Properties

Melting point:
-130 °C(lit.)
Boiling point:
78 °C(lit.)
Density 
0.806 g/mL at 25 °C
refractive index 
n20/D 1.359(lit.)
Flash point:
55 °F
storage temp. 
Flammables area
solubility 
soluble in All organic solvent
form 
Liquid
color 
Clear colorless
PH
7.0 (10g/l, H2O, 20℃)
explosive limit
3.5-15%(V)
BRN 
1731246
Stability:
Stable. Highly flammable. Incompatible with oxidizing agents, acids, acid chlorides, alkali metals, ammonia, moisture, peroxides.
CAS DataBase Reference
925-93-9
EPA Substance Registry System
Ethanol-d (925-93-9)
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Safety Information

Hazard Codes 
F
Risk Statements 
11
Safety Statements 
7-16-2017/7/16
RIDADR 
UN 1170 3/PG 2
WGK Germany 
1
HazardClass 
3.1
PackingGroup 
II
HS Code 
28459000

MSDS

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ETHANOL-D Usage And Synthesis

Chemical Properties

colourless liquid

Uses

Ethan(ol-d) may be used as a source of deuterium for the deuterium exchange reaction of ethyl acetoacetate.

Uses

ETHANOL-D is used in alcoholic beverages in suitable dilutions. Other uses are as solvent in laboratory and industry , in the manufacture of denatured alcohol, pharmaceuticals, in perfumery , in organic synthesis.

Preparation

ETHANOL-D is a deuterated NMR solvent,it can be prepared by reacting tetraethylorthosilicate with deuterium oxide.

General Description

Ethan(ol-d) (ethanol-d, ethanol-d1) is a deuterated NMR solvent useful in NMR-based research and analyses. It can be prepared by reacting tetraethylorthosilicate with deuterium oxide. The hydrogen bonding in ethanol-d1 has been investigated based on Raman spectral data. The far infrared (FIR) spectrum of ethanol-d1 has been studied using ab initio calculations.

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