Welcome to LookChem.com Sign In|Join Free
  • or

Encyclopedia

Bis(4-fluorophenyl)difluoromethane

Base Information Edit
  • Chemical Name:Bis(4-fluorophenyl)difluoromethane
  • CAS No.:339-27-5
  • Molecular Formula:C13H8F4
  • Molecular Weight:240.2
  • Hs Code.:
  • DSSTox Substance ID:DTXSID80472908
  • Nikkaji Number:J751.934F
  • Mol file:339-27-5.mol
Bis(4-fluorophenyl)difluoromethane

Synonyms:BIS(4-FLUOROPHENYL)DIFLUOROMETHANE;339-27-5;1-[difluoro-(4-fluorophenyl)methyl]-4-fluorobenzene;Difluorobis(4-fluorophenyl)methane;1-[difluoro(4-fluorophenyl)methyl]-4-fluorobenzene;SCHEMBL7929536;DTXSID80472908;YMCGUEMTJIVPGA-UHFFFAOYSA-N;AKOS005256204

Suppliers and Price of Bis(4-fluorophenyl)difluoromethane
Supply Marketing:Edit
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
Total 7 raw suppliers
Chemical Property of Bis(4-fluorophenyl)difluoromethane Edit
Chemical Property:
  • XLogP3:4.2
  • Hydrogen Bond Donor Count:0
  • Hydrogen Bond Acceptor Count:4
  • Rotatable Bond Count:2
  • Exact Mass:240.05621290
  • Heavy Atom Count:17
  • Complexity:214
Purity/Quality:

98%min *data from raw suppliers

Safty Information:
  • Pictogram(s):  
  • Hazard Codes: 
MSDS Files:
Useful:
  • Canonical SMILES:C1=CC(=CC=C1C(C2=CC=C(C=C2)F)(F)F)F
Technology Process of Bis(4-fluorophenyl)difluoromethane

There total 9 articles about Bis(4-fluorophenyl)difluoromethane which guide to synthetic route it. The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:

synthetic route:
Guidance literature:
With nitrosonium tetrafluoroborate; pyridine hydrogenfluoride; In dichloromethane; for 1h; Ambient temperature;
DOI:10.1016/0040-4020(95)00864-5
Guidance literature:
With para-iodoanisole; triethylamine tris(hydrogen fluoride); In acetonitrile; Ambient temperature; electrolyse: platinum anode and cathode, 1.9 V vs. SSCE, 5.9 F/mol;
DOI:10.1021/jo00103a003
Guidance literature:
With 2-ethoxy-N-(2-ethoxyethyl)-N-(trifluorothio)-ethanamine; at 90 ℃; for 24h; Neat (no solvent); Inert atmosphere;
DOI:10.1002/0471264229.os087.27
Refernces Edit

Chromogenic detection of nerve agent mimics

10.1039/b811247a

The research focuses on the development of a new chromogenic protocol for the selective detection of nerve agent mimics, which are chemical compounds that simulate the behavior of actual nerve agents such as Tabun, Sarin, and Soman. The study addresses the need for quick and reliable detection methods due to the high toxicity and ease of production of these chemicals. The researchers synthesized a chromogenic probe, referred to as chromoreactand 1, using 2-(2-(dimethylamino)phenyl)ethanol (DAPE) as a building block. This probe was designed to undergo a colorimetric change upon interaction with certain organophosphorus (OP) substrates, which are nerve agent simulants. The probe's reactivity was tested with diethyl chlorophosphate (DCP), diisopropyl fluorophosphate (DFP), and diethyl cyanophosphate (DCNP) in acetonitrile. The reaction resulted in a hypsochromic shift, indicating a color change from yellow to colorless due to an intramolecular cyclization process. The detection limit for DCNP and DCP was found to be 1.0 x 10^-4 mol dm^-3. Further experiments involved the preparation of compound 2 to confirm the reaction mechanism through NMR spectroscopy. The probe's reactivity was also studied in mixed water–acetonitrile solutions at pH 7, showing selective bleaching in the presence of DCP, DFP, and DCNP. Kinetic studies were performed to determine the rate constants and half-life of the reaction. The potential application of the probe for in situ sensing was demonstrated by adsorbing it onto silica gel and testing its response to DCP vapor and solution. The study concludes that the developed chromoreactand is a promising alternative for the colorimetric detection of nerve agent simulants, showing selectivity and a rapid response.

Post RFQ for Price