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4-CHLORO-2-ISOPROPYL-5-METHYLPHENOL

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4-CHLORO-2-ISOPROPYL-5-METHYLPHENOL Basic information

Product Name:
4-CHLORO-2-ISOPROPYL-5-METHYLPHENOL
Synonyms:
  • 4-chloro-5-methyl-2-(1-methylethyl)-pheno
  • 4-chloro-5-methyl-2-(1-methylethyl)phenol
  • 4-Chloro-6-isopropyl-3-methylphenol
  • 4-Chlorothymol
  • 6-chloro-thymo
  • Chlorthymol
  • Phenol, 4-chloro-5-methyl-2-(1-methylethyl)-
  • Thymol, 6-chloro-
CAS:
89-68-9
MF:
C10H13ClO
MW:
184.66
EINECS:
201-930-1
Product Categories:
  • Aromatic Phenols
Mol File:
89-68-9.mol
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4-CHLORO-2-ISOPROPYL-5-METHYLPHENOL Chemical Properties

Melting point:
60-62 °C (lit.)
Boiling point:
259-263°C
Density 
1.0639 (rough estimate)
refractive index 
1.5310 (estimate)
Flash point:
259-263°C
storage temp. 
-20°C Freezer, Under inert atmosphere
solubility 
ethanol: soluble10%, clear to very slightly hazy, yellow
form 
Solid
pka
10.16±0.23(Predicted)
color 
White to Off-White
Sensitive 
Light Sensitive
Merck 
14,2170
BRN 
2084453
Stability:
Stable. Combustible. Incompatible with strong oxidizing agents, strong bases.
LogP
3.920
CAS DataBase Reference
89-68-9(CAS DataBase Reference)
EPA Substance Registry System
6-Chlorothymol (89-68-9)
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Safety Information

Hazard Codes 
Xi
Risk Statements 
36/37/38
Safety Statements 
26-36
WGK Germany 
3
RTECS 
XP2620000
TSCA 
Yes
HS Code 
2908190090

MSDS

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4-CHLORO-2-ISOPROPYL-5-METHYLPHENOL Usage And Synthesis

Chemical Properties

white crystals or powder

Uses

4-Chloro-2-isopropyl-5-methylphenol is preservative; which is used in preparation method of nano-resin multifunctional ceramic tile interface agent.

Preparation

4-Chloro-2-isopropyl-5-methylphenol is prepared by reaction of equimolar amounts of propene and 4-chloro-3-methylphenol in the presence of bleaching clay under pressure at 140–160 ℃ or by chlorination of thymol with SO2Cl2 in chloroform. On account of its microbicidal properties, chlorothymol is of importance as a raw material for disinfectants.

General Description

Photocatalytic degradation of 4-chloro-2-isopropyl-5-methylphenol has been investigated in water and in simulated soil washing wastes containing Brij 35 in the presence of TiO2 dispersions.

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