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4-N-OCTYLANILINE

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4-N-OCTYLANILINE Basic information

Product Name:
4-N-OCTYLANILINE
Synonyms:
  • Benzenamine, 4-octyl-
  • 4-OCTYLANILINE
  • 4-N-OCTYLANILINE
  • P-OCTYLANILINE
  • 4-N-OCTYLANILINE 95+%
  • TIMTEC-BB SBB008315
  • Octylaniline
  • Einecs 240-358-7
CAS:
16245-79-7
MF:
C14H23N
MW:
205.34
EINECS:
240-358-7
Product Categories:
  • Anilines, Aromatic Amines and Nitro Compounds
  • Alkyl
  • Alkylanilines
  • Anilines (Building Blocks for Liquid Crystals)
  • Building Blocks for Liquid Crystals
  • Functional Materials
  • Amines
  • C11 to C38
  • Nitrogen Compounds
Mol File:
16245-79-7.mol
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4-N-OCTYLANILINE Chemical Properties

Melting point:
17°C
Boiling point:
175 °C/13 mmHg (lit.)
Density 
0.898 g/mL at 25 °C (lit.)
refractive index 
n20/D 1.516(lit.)
Flash point:
>230 °F
storage temp. 
Keep in dark place,Inert atmosphere,Room temperature
form 
powder to lump to clear liquid
pka
4.96±0.10(Predicted)
color 
White or Colorles to Yellow to Orange
Water Solubility 
Insoluble in water.
CAS DataBase Reference
16245-79-7(CAS DataBase Reference)
EPA Substance Registry System
4-Octylaniline (16245-79-7)
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Safety Information

Hazard Codes 
Xi
Risk Statements 
36/37/38
Safety Statements 
26-37/39
RIDADR 
UN 3082 9 / PGIII
WGK Germany 
3
HS Code 
29214990

MSDS

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4-N-OCTYLANILINE Usage And Synthesis

Chemical Properties

Orange liquid

Uses

4-Octylaniline can be been used as an extractant during the extraction of microgram level concentrations of ruthenium(IV) from halide medium. It can also been used in the synthesis of selective benzimidazole based analogs of sphingosine-1-phosphate.

Uses

4-Octylaniline has been used as an extractant during the extraction of microgram level concentrations of ruthenium(IV) from halide medium. It has also been used in the synthesis of selective benzimidazole based analogs of sphingosine-1-phosphate.

General Description

Micrometer-sized oil droplet of 4-octylaniline containing 5 mol% of an amphiphilic catalyst exhibits a self-propelled motion, producing tiny oil droplets. Kinetics of proton transfer facilitated by 4-octylaniline across the water/1,2-dichloroethane interface has been investigated by cyclic voltammetry and ac impedance.

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