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AgrochemicalsChlorsulfuron Impurity 5

SKU: SAC-13-E

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

Name:2-Chloro-5-((tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide CAT. NO.:SAC-13-E CAS NO.:NA

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Description

Chlorsulfuron Impurity 5

Chemical Name 2-Chloro-5-((tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide
Catalog Number SAC-13-E
Parent AI Chlorsulfuron
Synonyms NA
CAS Number NA
Molecular Formula C₁₁H₁₄ClNO₄S
Molecular Weight 291.75
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
Description &Applications 2-Chloro-5-((tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide is an intermediates in the synthesis of 5-hydroxy Chlorosulfuron (H839405) which is a derivative of Chlorosulfuron(C384978). Chlorsulfuron blocks the biosynthesis of valine [72-​18-​4] and isoleucine [73-​32-​5] in plants
References Thomas, R.: Plant Physiol., 75, 827 (1984)

Chemistry is a realm of awe-inspiring complexity, where molecules take center stage as the building blocks of matter. One such intriguing molecule is 2-Chloro-5-((Tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide, a compound that encapsulates the beauty and intricacy of chemical synthesis and molecular design. Let’s delve into the world of this remarkable chemical entity, its synthesis, potential applications, and the scientific endeavors that surround it.

Structural Marvel: At first glance, the compound’s name might appear daunting, but breaking it down reveals its structural components and the story they tell. The compound features a chloro-substituted benzene ring, denoted as 2-Chloro-5-Benzenesulfonamide. This core structure serves as the foundation upon which the molecule’s distinctive features are built.

The term Tetrahydro-2H-pyran-2-yl signifies the attachment of a cyclic, oxygen-containing group to the benzene ring. This fused ring imparts an intriguing conformational aspect to the molecule, potentially influencing its reactivity and interactions with other molecules. The addition of the oxy (–O) group further enhances the molecule’s diversity and capacity for complex interactions.

Synthesis and Scientific Artistry: The creation of such a molecule is a testament to the artistry of synthetic chemistry. Researchers meticulously plan each step of the synthesis, considering reactivity, selectivity, and yields. The synthesis of 2-Chloro-5-((Tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide might involve coupling reactions, protection-deprotection strategies, and intricate transformations that require both creativity and technical finesse.

Potential Applications: The intriguing structure of this compound opens doors to a myriad of potential applications across various fields:

  1. Medicinal Chemistry: Molecules with sulfonamide moieties have been known for their biological activities, including antibacterial, antifungal, and enzyme-inhibitory properties. The compound’s unique structure might render it a promising candidate for drug design or medicinal research.
  2. Materials Science: The combination of aromatic and cyclic components could make this compound suitable for functional materials. It could serve as a building block for the design of new polymers or materials with tailored properties.
  3. Catalysis: The presence of both electron-withdrawing and electron-donating groups within the molecule could make it a potential catalyst, influencing chemical reactions through specific interactions.
  4. Pharmacology: The cyclic structure attached to the benzene ring might play a role in receptor binding or modulation. Research into its potential effects on cellular pathways could be a fascinating avenue.

Scientific Exploration: The study of 2-Chloro-5-((Tetrahydro-2H-pyran-2-yl)oxy) Benzenesulfonamide is not just about the molecule itself; it’s about the questions it raises and the scientific endeavors it inspires. Researchers may explore its reactivity under different conditions, investigate its interactions with other molecules, and unravel its behavior in various environments. Such exploration contributes not only to fundamental chemical knowledge but also to the advancement of human understanding and potential technological innovation.

Additional information

Pack Size

50mg

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