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2,5-Difluorotoluene

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2,5-Difluorotoluene Basic information

Product Name:
2,5-Difluorotoluene
Synonyms:
  • 1,4-Difluoro-2-methylbenzene
  • Benzene, 1,4-difluoro-2-methyl-
  • 2,5-Difluorotolune
  • 2 5-DIFLUOROTOLUENE 98%
  • 2,5-Difluorotoluene,98%
  • 2,5-DIFLUOROTOLUENE
  • 2,5-Difluorotoluene, 99.5+%
  • 2,5-Difluorotoluene, 99+%
CAS:
452-67-5
MF:
C7H6F2
MW:
128.12
EINECS:
207-205-6
Product Categories:
  • Aromatic Hydrocarbons (substituted) & Derivatives
  • Halogen toluene
  • Miscellaneous
  • Fluorinated benzene series
  • Fluorin-contained toluene series
Mol File:
452-67-5.mol
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2,5-Difluorotoluene Chemical Properties

Melting point:
-35°C
Boiling point:
117 °C775 mm Hg(lit.)
Density 
1.36 g/mL at 25 °C(lit.)
refractive index 
n20/D 1.452(lit.)
Flash point:
55 °F
storage temp. 
2-8°C
form 
liquid
color 
Clear, colourless
Specific Gravity
1.360
BRN 
2041492
Stability:
Stable. Incompatible with strong oxidizing agents.
CAS DataBase Reference
452-67-5(CAS DataBase Reference)
NIST Chemistry Reference
2,5-Difluorotoluene(452-67-5)
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Safety Information

Hazard Codes 
F,F+
Risk Statements 
11
Safety Statements 
16-29-33
RIDADR 
UN 1993 3/PG 2
WGK Germany 
3
Hazard Note 
Flammable
HazardClass 
3
PackingGroup 
II
HS Code 
29039990

MSDS

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2,5-Difluorotoluene Usage And Synthesis

Chemical Properties

colorless to light yellow liqui

Uses

2,5-Difluorobenzaldehyde is a very important fine chemical. It is an intermediate for the synthesis of many important chemicals and is used as an intermediate for medicines, pesticides, and liquid crystal materials.

Synthesis

108-88-3

352-32-9

95-52-3

352-70-5

452-76-6

452-67-5

2927-34-6

General procedure for the synthesis of p-fluorotoluene, 2-fluorotoluene, 3-fluorotoluene, 2,4-difluorotoluene, 2,5-difluorotoluene, and 1,2-difluoro-4-methylbenzene from toluene: To a glass reactor fitted with a PTFE-lined magnetic stirring bar connected to a gas scrubbing flask, add toluene (0.95-1.14 mmol), acetonitrile (1-2.5 mL/mmol toluene ) and boron trifluoride ethyl ether complex (1.3-1.6 mmol/mmol toluene). The reaction solution was stirred at -25 °C for 10-15 min, followed by the addition of xenon difluoride (1.2-1.3 mmol/mmol toluene) in batches. The reaction mixture was slowly warmed to 22 °C over 1 h and stirring was continued for 40-60 min. Upon completion of the reaction, hexafluorobenzene was added as an internal standard and samples were taken for 19F NMR analysis (Method B). The reaction mixture was quenched with saturated aqueous sodium bicarbonate and extracted with dichloromethane (1-2 mL). The organic phases were combined, dried with anhydrous magnesium sulfate and subsequently analyzed by 19F NMR and GC/MS (Procedure C). The major products are listed in the table and the remaining products are listed below (GC/MS data).

References

[1] Russian Journal of Organic Chemistry, 2016, vol. 52, # 10, p. 1400 - 1407
[2] Zh. Org. Khim., 2016, vol. 52, # 10, p. 1412 - 1419,8

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