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AgrochemicalsThiamethoxam Impurity 12

SKU: SAT-13-L

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

Name:Ethyl 2-Chlorothiazole-5-carboxylate

CAT. NO.:SAT-13-L

CAS NO.:81449-93-6

  • Description
  • Datasheet
  • Additional information

Description

Thiamethoxam Impurity 12

Chemical Name Ethyl 2-Chlorothiazole-5-carboxylate
Catalog Number SAT-13-L
Parent AI Thiamethoxam
Synonyms Ethyl 2-Chloro-1,3-thiazole-5-carboxylate; Ethyl 2-Chloro-5-thiazolecarboxylate
CAS Number 81449-93-6
Molecular Formula C₆H₆ClNO₂S
Molecular Weight 191.64
Appearance Colorless Oil
Melting Point 283.9°C
Shipping & Storage Information

 

Storage- 20°C

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

Stability: Datasheet

Solubility Chloroform
Stability Stable under recommended storage conditions
Category Agrochemical Impurity Standard/Metabolites
Description &Applications It is an intermediate in synthesizing 2-Chloro-5-thiazolecarboxylic Acid (C411465). It was studied as one of the metabolites of thiamethoxam, clothianidin, and dinotefuran in mice.
References Ford, K., et al.: Chem. Res. Toxicol., 19, 1549 (2006)

It is a chemical compound that falls within the category of heterocyclic organic compounds. It is a member of the thiazolecarboxylic acid ethyl esters and is known for its diverse applications in the pharmaceutical and agrochemical industries. Its unique structure and properties make it an essential building block in the synthesis of various biologically active molecules.

Chemical Properties: it has a molecular formula of C6H6ClNO2S and a molecular weight of 191.63 g/mol. It is characterized by a thiazole ring fused to a carboxylic acid ester group, with a chlorine atom attached at the second position. The compound is typically a white to light yellow solid, and its chemical structure confers it with significant reactivity and stability under appropriate conditions.

Synthesis: it can be synthesized through various methods, with the most common approach being the reaction of 2-aminothiazole with chloroacetyl chloride followed by esterification. This process involves careful control of temperature and reaction conditions to ensure high yield and purity of the final product. The synthesis can also be optimized through the use of various catalysts and reaction modifiers, allowing for increased efficiency and scalability in industrial production.

Applications:

  1. Pharmaceutical Industry: it serves as a vital intermediate in the synthesis of pharmaceutical compounds with diverse biological activities. It acts as a key building block for the production of anti-inflammatory agents, antibacterial drugs, and various other medicinally relevant substances.
  2. Agrochemical Industry: Due to its unique structure, the compound finds application in the development of agrochemicals such as pesticides and fungicides. It serves as a crucial precursor in the synthesis of crop protection agents, contributing to the enhancement of agricultural productivity and sustainability.

Safety and Handling: it should be handled with care due to its potential hazards. It is essential to follow strict safety protocols, including the use of appropriate protective equipment such as gloves, goggles, and lab coats during handling and synthesis. Additionally, proper ventilation and adherence to standard laboratory practices are necessary to minimize the risk of exposure and ensure a safe working environment.

Regulatory Considerations: As with all chemical compounds, it  is subject to regulatory requirements and guidelines, particularly regarding its production, handling, and use. Compliance with local and international regulations is crucial to ensure the safe and responsible use of the compound in various industrial applications while minimizing any potential environmental impact. Regular updates and adherence to evolving regulatory standards are essential for maintaining compliance and ensuring the sustainable utilization of the compound in different industries.

Additional information

Pack Size

50mg

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