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104147-32-2 | 3,5-Dichloro-4-(1,1,2,2-tetrafluoroethoxy)aniline

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3,5-Dichloro-4-(1,1,2,2-tetrafluoroethoxy)aniline (DCFTA) is a chlorinated aniline compound which has been widely used in scientific research due to its unique properties. It is a colorless solid which is soluble in water and is used in a variety of applications, including drug synthesis, analytical chemistry, and bioc...

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CAS:104147-32-2 | 3,5-Dichloro-4-(1,1,2,2-tetrafluoroethoxy)aniline ,Description

3,5-Dichloro-4-(1,1,2,2-tetrafluoroethoxy)aniline (DCFTA) is a chlorinated aniline compound which has been widely used in scientific research due to its unique properties. It is a colorless solid which is soluble in water and is used in a variety of applications, including drug synthesis, analytical chemistry, and biochemistry. DCFTA has been studied for its potential to act as an intermediate in the synthesis of drugs, as well as its ability to act as a catalyst in certain biochemical reactions. Additionally, it has been used to study the mechanisms of action of drugs and to explore their biochemical and physiological effects.
 

Scientific Research Applications

 

  • Transformation Studies: This compound is used to study the transformation of chloroanilines into chloroazobenzenes in soil, contributing to our understanding of pesticide transformations (Bartha, Linke, & Pramer, 1968).
  • Synthesis of Polychlorobiphenyls: It plays a role in the synthesis of polychlorobiphenyls and their derivatives, which are important in various industrial applications (Bergman, Bamford, & Wachtmeister, 1981).
  • Pentazole Anion Synthesis: The compound is utilized in synthesizing the pentazole anion, potentially offering insights into aromaticity (Xu Bing-tao et al., 2017).
  • Fluorescent Materials: It's used as a quaternization agent in polyetherurethane precursors for making films with fluorescent properties (Buruianǎ et al., 2005) .
  • Nonlinear Optical Materials: This chemical offers new design possibilities for second-order nonlinear optical materials (Wortmann et al., 1993).
  • Dendritic Melamines Synthesis: It's used in the synthesis, structure, and supramolecular behavior of novel dendritic melamines (Morar et al., 2018).
  • Drug Metabolism Studies: It can be incorporated in compounds as internal standards in drug metabolism and pharmacokinetics studies (Latli et al., 2008).
  • Fungicidal and Larvicidal Applications: Derivatives of this compound show potential as fungicides, direct inhibitors of tobacco mosaic virus, and larvicidal agents against various insects (Wang et al., 2011).
  • Liquid Crystal Studies: Its derivatives exhibit stable smectic B and A phases, useful for studying liquid crystalline properties (Miyajima et al., 1995).
  • Nephrotoxicity Studies: The exposure to this chemical leads to nephrotoxicity in both in vitro and in vivo models, aiding in the study of renal toxicity (Rankin et al., 2013).
  • Bioremediation Research: It's used in studies exploring the biological dehalogenation of chloroanilines in polluted aquifers, suggesting novel bioremediation methods (Kuhn & Suflita, 1989).
  • Preclinical Toxicology: A compound synthesized using this chemical was used for preclinical toxicology studies of a corticotropin-releasing factor-1 receptor antagonist (Li et al., 2012).
  • Pesticide Development: It's involved in the synthetic process of novel pesticides like Bistrifluron, showcasing potent growth-retarding activity against pests (Liu An-chan, 2015).
  • Electronics and Semiconductor Research: Synthesized polymers show electrical conductivity and are typical semiconductors, relevant in electronic material research (Kaya & Aydın, 2009).

More Information

Product Name :3,5-Dichloro-4-(1,1,2,2-tetrafluoroethoxy)aniline
CAS No. :104147-32-2Molecular Weight :278.03
MDL No. :MFCD10000640Purity/ Specification : 
Molecular Formula :C8H5Cl2F4NOStorage :Sealed in dry,2-8°C
Boiling Point :-  
GHS Pictogram : 
Signal Word : Precautionary Statements : 
UN# :-Class :-
Hazard Statements :-Packing Group :-

 

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