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2-IODOOCTANE

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2-IODOOCTANE Basic information

Product Name:
2-IODOOCTANE
Synonyms:
  • 1-Iodooctane98%
  • 1-Iodooctane, stabilized, 98%
  • 1-IODOOCTANE , STABILIZED WITH COPPER
  • 1-Iodooctane, 98+%, stab. with copper
  • 1-Iodooctane (stabilized with Copper chip)
  • 1-Iodooctane, 98%, stabilized
  • 1-Iodooctane,Octyl iodide
  • 1-Iodooctane, stabilized, 98% 100GR
CAS:
629-27-6
MF:
C8H17I
MW:
240.12
EINECS:
211-084-5
Product Categories:
  • Alkyl
  • Building Blocks
  • Iodine Compounds
  • Chemical Synthesis
  • Halogenated Hydrocarbons
  • Organic Building Blocks
Mol File:
629-27-6.mol
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2-IODOOCTANE Chemical Properties

Melting point:
-46--45 °C (lit.)
Boiling point:
225-226 °C (lit.)
Density 
1.33 g/mL at 25 °C (lit.)
refractive index 
n20/D 1.4878(lit.)
Flash point:
203 °F
storage temp. 
Keep in dark place,Sealed in dry,Room Temperature
solubility 
Chloroform (Slightly), Methanol (Slightly)
form 
Liquid
Specific Gravity
1.330
color 
Clear colorless to amber
Water Solubility 
Insoluble in water.
Sensitive 
Light Sensitive
BRN 
1697479
Dielectric constant
4.9(20℃)
CAS DataBase Reference
629-27-6(CAS DataBase Reference)
EPA Substance Registry System
Octane, 1-iodo- (629-27-6)
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Safety Information

Hazard Codes 
Xi
Risk Statements 
36/37/38
Safety Statements 
26-36-37/39
RIDADR 
UN 2810 6.1/PG 3
WGK Germany 
3
RTECS 
RG9700100
8
TSCA 
Yes
HS Code 
29033990

MSDS

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2-IODOOCTANE Usage And Synthesis

Chemical Properties

clear colourless to amber liquid

Uses

Alkylation of [2,2?-([2,2?-bipyridine]-6,6?-diyl)bis[phenolato]-N,N?,O,O?]nickel(II)was performed using the catalytic reduction of 1-iodooctane. Primary alkyl iodide 1-iodooctane reacts with lithium aluminum deuteride (LAD) in a 1:0.2 ratio to form 1-deuteriooctane.

Synthesis Reference(s)

Tetrahedron Letters, 23, p. 4411, 1982 DOI: 10.1016/S0040-4039(00)85615-4

General Description

1-Iodooctane undergoes catalytic reduction by nickel (I) salen electrogenerated at a glassy carbon cathode in dimethylformamide. Radical mechanism of formation of monolayer on silicon ground in the presence of 1-iodooctane has been studied by X-ray photoelectron spectroscopy.

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