Interesting facts
Interesting Facts about 2,2-Dichloro-1,1-Difluoro-1-Methoxy-Ethane
2,2-Dichloro-1,1-difluoro-1-methoxy-ethane is a fascinating chemical compound that belongs to the class of halogenated compounds. Here are some intriguing points about this compound:
- Utility in Organic Synthesis: This compound is utilized in various organic synthesis processes, exhibiting versatile reactivity that can be harnessed in the preparation of other chemical compounds.
- Halogenated Nature: The presence of both Cl (chlorine) and F (fluorine) atoms endows this compound with unique characteristics, such as increased stability and altered reactivity compared to non-halogenated counterparts.
- Environmental Impact: As a chlorofluorocarbon (CFC) derivative, compounds like this one have been scrutinized for their potential impact on the ozone layer. Research into safer alternatives is ongoing in the field of atmospheric chemistry.
- Medical Applications: Certain halogenated compounds are explored for their potential in pharmaceutical formulations, where they may aid in the delivery of active ingredients or in improving the efficacy of drugs.
- Physical Properties: The combination of chlorinated and fluorinated ethers can influence the physical properties of this compound, potentially making it a valuable solvent or reagent in laboratories.
In summary, 2,2-dichloro-1,1-difluoro-1-methoxy-ethane is more than just a collection of atoms; its unique composition presents numerous opportunities for research and application across various chemical fields. As scientists continue to explore its potential, the compound serves as a reminder of the complexity and the interconnectedness of chemistry.
Synonyms
methoxyflurane
76-38-0
Methoxyfluran
2,2-Dichloro-1,1-difluoroethyl methyl ether
Methoflurane
Penthrane
Metoxfluran
Metoxifluran
Analgizer
Anecotan
Inhalan
Methoxane
Metofane
Pentrane
2,2-Dichloro-1,1-difluoro-1-methoxyethane
Methofane
Pentran
Methoxiflurane
Methoxifluranum
Ingalan
Methoxyfluoran
Metoxiflurano
Methoxyfluorane
Methoxyfluranum
Metossiflurano [DCIT]
Metossiflurano
Ethane, 2,2-dichloro-1,1-difluoro-1-methoxy-
Methoxyfluranum [INN-Latin]
Metoxiflurano [INN-Spanish]
NSC-110432
Methyl 1,1-difluoro-2,2-dichloroethyl ether
Penthrox
(2,2-dichloro-1,1-difluoroethyl) methyl ether
CCRIS 5840
Methoxy flurane
HSDB 7201
EINECS 200-956-0
DA-759
Ether, 2,2-dichloro-1,1-difluoroethyl methyl
BRN 1737766
CHEBI:6843
DTXSID7025556
UNII-30905R8O7B
30905R8O7B
DTXCID405556
Methofluranum
2,2-DICHLORO-1,1-DIFLUOROETHYLMETHYLETHER
Methoxyflurane [USAN:USP:INN:BAN]
NSC110432
Penthrane (VAN)
Metofane (VAN)
NCGC00168747-01
Methoxyfluranum (INN-Latin)
Metoxiflurano (INN-Spanish)
METHOXYFLURANE (MART.)
METHOXYFLURANE [MART.]
METHOXYFLURANE (USP-RS)
METHOXYFLURANE [USP-RS]
Methoxyflurane (USAN:USP:INN:BAN)
METHOXYFLURANE (USP MONOGRAPH)
METHOXYFLURANE [USP MONOGRAPH]
Penthrane (TN)
Methoxyflurane (USP/INN)
Methoxyflurane [Anaesthetics, volatile]
WLN: GYGXFFO1
METHOXYFLURANE [MI]
CHEMBL1341
METHOXYFLURANE [INN]
METHOXYFLURANE [HSDB]
METHOXYFLURANE [USAN]
METHOXY FLURANE [JAN]
METHOXYFLURANE [VANDF]
SCHEMBL121229
2,1-difluoro-1-methoxyethane
2,1-difluoroethyl methyl ether
GTPL7234
METHOXYFLURANE [WHO-DD]
N02BG09
DA759
METHOXYFLURANE [GREEN BOOK]
HY-B0718
Tox21_112626
MFCD00040144
AKOS006228995
DB01028
KS-5167
CAS-76-38-0
Ether,2-dichloro-1,1-difluoroethyl methyl
DB-019611
CS-0009624
Ethane,2-dichloro-1,1-difluoro-1-methoxy-
NS00041004
1,1-Difluoro-2,2-dichloroethyl methyl ether
C07517
D00544
Q411594
SR-01000944693
SR-01000944693-1
BRD-K06152156-001-01-8
Z1201617823
200-956-0
Solubility of 2,2-Dichloro-1,1-difluoro-1-methoxy-ethane
2,2-Dichloro-1,1-difluoro-1-methoxy-ethane (C3H2Cl2F2O) exhibits distinct solubility characteristics due to its unique molecular structure. When considering solubility, several factors come into play:
While specific solubility data may not be readily available, it is often observed that:
In summary, the solubility of 2,2-dichloro-1,1-difluoro-1-methoxy-ethane is influenced by its molecular interactions, making it a compound of interest for further studies on solvent compatibility and environmental behavior. As always, it's crucial to refer to specific solubility data from reliable sources for practical applications.