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AgrochemicalsCarfentrazone Impurity 5

SKU: SAC-06-E

Original price was: ₹60,000.00.Current price is: ₹50,000.00.

Name:1-(2,4-Dichloro-6-fluorophenyl)-4-(difluoromethyl)-3-methyl-1H-1,2,4-triazol-5(4H)-one CAT. NO.:SAC-06-E CAS NO.:NA

 

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  • Datasheet
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Description

Carfentrazone Impurity 5

Chemical Name 1-(2,4-Dichloro-6-fluorophenyl)-4-(difluoromethyl)-3-methyl-1H-1,2,4-triazol-5(4H)-one
Catalog Number SAC-06-E
Parent AI Carfentrazone
Synonyms Dichloro Fluoro Triazolin-3-one
CAS Number NA
Molecular Formula C₁₀H₆Cl₂F₃N₃O
Molecular Weight 312.08
Appearance NA
Melting Point NA
Shipping & Storage Information

 

Storage-20°C

Shipping: Free Shipping at Room Temperature in INDIA,  may vary elsewhere

Stability: Datasheet

Solubility NA
Stability Stable under recommended storage conditions
Category Standards; Pharmaceutical/API Drug Impurities/Metabolites; Environmental Standards, Mutagens and Metabolites; Pesticides
Description &Applications 1-(2,4-Dichloro-6-fluorophenyl)-4-(difluoromethyl)-3-methyl-1H-1,2,4-triazol-5(4H)-one is a Carfentrazone (C183465) Impurity. Carfentrazone is a triazolone herbicide used in the protection of grain and vegetable crops from weeds.
References Bhullar, M.S., et al.: Crop. Protect., 43, 216 (2013); Malik, R.S., et al.: Environ. Ecol., 30, 717 (2012);

1-(2,4-Dichloro-6-fluorophenyl)-4-(difluoromethyl)-3-methyl-1H-1,2,4-triazol-5(4H)-one, While the name might seem daunting, each part of it carries valuable information about the molecule’s structure and functional groups. This article aims to dissect the compound, highlighting its structure, potential uses, and significance in various fields.

Understanding the Structure: Breaking down the compound’s name provides insights into its molecular structure and constituent elements.

  • 1-(2,4-Dichloro-6-fluorophenyl): This portion signifies the presence of a phenyl ring (a six-membered carbon ring) with specific chlorine and fluorine substitutions. These halogen atoms can significantly influence the compound’s reactivity and interactions.
  • 4-(Difluoromethyl)-3-methyl: This segment describes the presence of a methyl group (CH3) and a difluoromethyl group (CF2H) attached to the phenyl ring. These substituents can alter the compound’s physical and chemical properties, making it more or less reactive.
  • 1H-1,2,4-triazol-5(4H)-one: This part defines the core structure of the molecule. It contains a 1,2,4-triazole ring, a five-membered ring composed of three nitrogen atoms and two carbon atoms. The “1H” and “4H” denote the tautomeric forms of the compound, which indicate different hydrogen positions on the ring. The “one” signifies a ketone functional group (C=O) attached to the ring.

Potential Applications: The unique combination of the compound’s structural features opens up possibilities for various applications across scientific disciplines:

  1. Pharmaceutical Chemistry: Molecules with 1,2,4-triazole cores have shown potential as antimicrobial, antifungal, and antitumor agents. The presence of halogens and other functional groups can further enhance these activities by improving the compound’s affinity for specific biological targets.
  2. Agrochemicals: Similar to pharmaceuticals, the structural components of the compound can be tailored to develop novel agrochemicals. These compounds could contribute to crop protection and enhancement by inhibiting specific enzymes or biological processes in pests or plants.
  3. Material Science: The presence of halogens and unique ring structures can influence the compound’s electronic properties, making it suitable for use in organic electronics, such as OLEDs (organic light-emitting diodes), or as building blocks for novel materials.
  4. Catalysis: Certain chemical reactions require catalysts to proceed efficiently. Compounds with complex structures like 1-(2,4-Dichloro-6-fluorophenyl)-4-(difluoromethyl)-3-methyl-1H-1,2,4-triazol-5(4H)-one could potentially serve as catalysts in specific reactions due to their unique electronic and steric properties.

Significance: The compound’s complex structure and potential applications highlight its significance in pushing the boundaries of chemical research and innovation. By studying its reactivity, interactions, and potential uses, researchers can gain insights into the intricacies of organic synthesis, molecular design, and structure-activity relationships. Furthermore, this compound serves as a reminder of the intricate world of molecules and the endless possibilities they offer in various scientific and industrial domains.

Additional information

Pack Size

50mg

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