Online Database of Chemicals from Around the World

Ethyl chlorodifluoroacetate
[CAS# 383-62-0]

List of Suppliers
Simagchem Corporation China Inquire  
+86 13806087780
sale@simagchem.com
Chemical manufacturer since 2002
chemBlink standard supplier since 2008
Hefei TNJ Chemical Industry Co., Ltd. China Inquire  
+86 (551) 6541-8684
sales@tnjchem.com
Chemical manufacturer since 2001
chemBlink standard supplier since 2010
BOC Sciences USA Inquire  
+1 (631) 485-4226
info@bocsci.com
Chemical manufacturer
chemBlink standard supplier since 2010
Leap Chem Co., Ltd. China Inquire  
+86 (852) 3060-6658
market19@leapchem.com
QQ chat
Chemical manufacturer since 2006
chemBlink standard supplier since 2015
Shanghai Yuanye Bio-Technology Co., Ltd. China Inquire  
+86 (21) 6184-5781
+86 13585604150
shyysw053@163.com
QQ chat
Chemical manufacturer since 2009
chemBlink standard supplier since 2016
Shanghai Qinba Chemical Co., Ltd. China Inquire  
+86 (21) 6517-0832
+86 17301729617
shangfluoro@hotmail.com
Skype Chat
QQ chat
Chemical distributor since 2011
chemBlink standard supplier since 2017
Shanghai Fuxin Pharmaceutical Co., Ltd. China Inquire  
+86 (21) 3130-0828
+86 18645121291
contact@fuxinpharm.com
Chemical manufacturer since 2016
chemBlink standard supplier since 2018
Neostar United (Changzhou) Industrial Co., Ltd. China Inquire  
+86 (519) 8555-7386
+86 18015025600
marketing1@neostarunited.com
Chemical distributor since 2014
chemBlink standard supplier since 2020
Complete supplier list of Ethyl chlorodifluoroacetate
Identification
Classification Chemical reagent >> Organic reagent >> Ester >> Ethyl ester compound
Name Ethyl chlorodifluoroacetate
Synonyms Chlorodifluoroacetic acid ethyl ester
Molecular Structure CAS # 383-62-0, Ethyl chlorodifluoroacetate, Chlorodifluoroacetic acid ethyl ester
Molecular Formula C4H5ClF2O2
Molecular Weight 158.53
CAS Registry Number 383-62-0
EC Number 206-850-0
SMILES CCOC(=O)C(F)(F)Cl
Properties
Density 1.3±0.1 g/cm3, Calc.*, 1.252 g/mL (Expl.)
Index of Refraction 1.374, Calc.*, 1.358 (Expl.)
Boiling Point 93.8±35.0 ºC (760 mmHg), Calc.*, 96-97.5 ºC (Expl.)
Flash Point 28.9±15.1 ºC, Calc.*, 18 ºC (Expl.)
* Calculated using Advanced Chemistry Development (ACD/Labs) Software.
Safety Data
Hazard Symbols symbol symbol   GHS02;GHS06 Danger    Details
Hazard Statements H225-H314-H318    Details
Precautionary Statements P210-P233-P240-P241-P242-P243-P260-P264-P264+P265-P280-P301+P330+P331-P302+P361+P354-P303+P361+P353-P304+P340-P305+P354+P338-P316-P317-P321-P363-P370+P378-P403+P235-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Flammable liquidsFlam. Liq.2H225
Skin corrosionSkin Corr.1BH314
Serious eye damageEye Dam.1H318
Eye irritationEye Irrit.2H319
Specific target organ toxicity - single exposureSTOT SE3H335
Skin irritationSkin Irrit.2H315
Transport Information UN 2924
SDS Available
up Discovory and Applicatios
Ethyl chlorodifluoroacetate (C4HF2O2) is a fluorinated organic compound that features both a chlorodifluoroacetate group and an ethyl ester group. The compound has garnered attention for its utility in organic synthesis, particularly in the preparation of various fluorinated derivatives. The presence of the trifluoromethyl group and the ester functionality allows for a range of reactivity that makes this compound useful in various chemical applications.

The synthesis of ethyl chlorodifluoroacetate involves reactions between difluoroacetic acid derivatives and ethylating reagents, with subsequent chlorination. As part of the broader category of organofluorine compounds, ethyl chlorodifluoroacetate is primarily synthesized and used in specialized synthetic organic chemistry, where it serves as a precursor to more complex fluorinated chemicals.

One of the main applications of ethyl chlorodifluoroacetate lies in its use as a reagent in the preparation of fluorinated intermediates and compounds. Fluorine substitution is often employed in drug development to improve the bioactivity, metabolic stability, and lipophilicity of certain compounds. The chlorodifluoroacetate group in ethyl chlorodifluoroacetate is an important functional group in the synthesis of fluorinated organic molecules, especially those intended for use in the pharmaceutical, agrochemical, and polymer industries.

In pharmaceutical synthesis, ethyl chlorodifluoroacetate serves as an intermediate in the preparation of fluorinated compounds, which are known for their enhanced biological activity. The introduction of fluorine atoms into organic molecules can increase the metabolic stability and bioavailability of drugs. This makes fluorinated compounds useful in the design of therapeutics, particularly for diseases such as cancer and cardiovascular disorders. Fluorinated organic molecules are also employed in the synthesis of antibiotics and antiviral agents, where the improved stability and resistance to enzymatic degradation enhance the efficacy of the drug.

In the agrochemical industry, ethyl chlorodifluoroacetate can be used to synthesize fluorinated agrochemicals, such as herbicides, fungicides, and insecticides. Fluorinated agrochemicals are known for their enhanced chemical stability, which allows them to be effective for longer periods, thereby improving their performance in protecting crops against pests and diseases. The incorporation of fluorine atoms also improves the environmental persistence and reduces the rate of degradation, making these chemicals more effective in agricultural applications.

Ethyl chlorodifluoroacetate is also of interest in the development of specialty polymers and materials. Fluorinated polymers, in particular, are known for their resistance to solvents, high thermal stability, and mechanical properties. The presence of the chlorodifluoroacetate group in ethyl chlorodifluoroacetate allows for the creation of polymers with enhanced chemical resistance, making them suitable for use in demanding applications, including coatings, adhesives, and sealants. These polymers are especially useful in industries where materials must withstand aggressive chemicals and extreme conditions.

Moreover, the ability to incorporate the chlorodifluoroacetate group into other molecular structures has led to its application in the design of functional materials for use in electronics and optoelectronics. Fluorinated materials, including those derived from ethyl chlorodifluoroacetate, can exhibit improved stability under harsh conditions, making them suitable for applications in organic electronics, sensors, and other high-tech devices.

As with many fluorinated chemicals, the use of ethyl chlorodifluoroacetate must be carefully managed due to the environmental persistence of fluorinated compounds. The chlorodifluoroacetate group, while providing stability and reactivity, can also contribute to the environmental burden if not properly controlled. Efforts to minimize the environmental impact of such chemicals involve the development of safer disposal methods and more sustainable synthetic routes for the production of fluorinated compounds.

In conclusion, ethyl chlorodifluoroacetate is a versatile and valuable compound in organic synthesis. It is primarily used as a precursor in the preparation of fluorinated compounds with applications in pharmaceuticals, agrochemicals, and polymer industries. Its role as a reagent in the synthesis of fluorinated intermediates enables the development of compounds with enhanced stability, biological activity, and chemical resistance. While its use offers several benefits, careful consideration must be given to its environmental impact due to the persistence of fluorinated chemicals in the environment.

References

2016. Deployment of Small-Ring Azaheterocycles as Building Blocks for the Synthesis of Organofluorine Compounds. Synlett, 27(10).
DOI: 10.1055/s-0035-1561379

2013. A theoretical investigation on the kinetics and reactivity of the gas-phase reactions of ethyl chlorodifluoroacetate with OH radical and Cl atom at 298 K. Structural Chemistry, 24(6).
DOI: 10.1007/s11224-013-0312-3

2011. Synthesis of new fluorine-containing pyrazolo[3,4-b]pyridinones as promising drug precursors. Russian Chemical Bulletin, 60(4).
DOI: 10.1007/s11172-011-0114-y
Market Analysis Reports
List of Reports Available for Ethyl chlorodifluoroacetate
Related Products
Ethyl (3-chlorobenzoyl)acetate  Ethyl (4-chlorobenzoyl)acetate  Ethyl 4-chlorobenzoylformate  Ethyl 3-chlorobenzoylformate  Ethyl 4-chlorobutyrate  Ethyl 5-chloro-1-(4-chlorophenyl)-1H-pyrazole-4-carboxylate  Ethyl 1-(3-chloro-5-((4-(4-chlorothiophen-2-yl)-5-(4-cyclohexylpiperazin-1-yl)thiazol-2-yl)carbamoyl)pyridin-2-yl)piperidine-4-carboxylate  Ethyl 4-chlorocinnamate  Ethyl 2-chloro-3-cyano-6-methylisonicotinate  Ethyl 2-chloro-4-(cyclopropylamino)pyrimidine-5-carboxylate  Ethyl 4-chloro-4,4-difluoroacetoacetate  1-Ethyl-6-chloro-1,4-dihydro-4-oxo-7-(1-piperazinyl)-3-quinolinecarboxylic acid  Ethyl 2-chloro-7,8-dihydropyrido[3,4-b]pyrazine-6(5H)-carboxylate  Ethyl butyrylacetate  2-Ethylbutyryl chloride  Ethyl caffeate  Ethyl caffeate  7-Ethylcamptothecin  1H-1-Ethyl Candesartan Cilexetil  2H-2-Ethyl Candesartan Cilexetil