AgrochemicalsThiamethoxam Impurity 11
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Name:3,6-Dihydro-N-nitro-2H-1,3,5-oxadiazin-4-amine
CAT. NO.:SAT-13-K
CAS NO.:123019-22-7
- Description
- Datasheet
- Additional information
Description
Thiamethoxam Impurity 11
| Chemical Name | 3,6-Dihydro-N-nitro-2H-1,3,5-oxadiazin-4-amine |
| Catalog Number | SAT-13-K |
| Parent AI | Thiamethoxam |
| Synonyms | N-(3,6-Dihydro-2H-1,3,5-oxadiazin-4-yl)nitramide |
| CAS Number | 123019-22-7 |
| Molecular Formula | C₃H₆N₄O₃ |
| Molecular Weight | 146.11 |
| 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; Environmental Standards, Mutagens and Metabolites |
| Description &Applications | 3,6-Dihydro-N-nitro-2H-1,3,5-oxadiazin-4-amine is an intermediate in the synthesis of N-Desmethylthiamethoxam (D292485), an impurity of thiamethoxam. Thiamethoxam is a hepatotoxic insecticide in mice |
| References | Swenson, T. L., et al.: Toxicol. Lett., 216, 139 (2013); Karmakar, R., et al.: Pest Manag. Sci, 65, 931 (2009) |
It is a heterocyclic organic compound with a unique structural arrangement. This compound belongs to the oxadiazine family, characterized by its fused five-membered ring system, comprising two nitrogen atoms and three carbon atoms. Notably, the incorporation of nitrogen and oxygen atoms within the ring contributes to its diverse chemical properties and potential applications.
Chemical Formula and Structure:
The chemical formula of this is C2H4N4O3. Structurally, it consists of a six-membered ring system where two nitrogen atoms are adjacent to each other, with a nitro group (-NO2) and an amine group (-NH2) attached at different positions. The arrangement of atoms and functional groups within the molecule significantly impacts its reactivity and potential applications in various fields.
Physical Properties:
The physical properties of this are critical for understanding its behavior in different environments. The compound is known to exist as a solid at room temperature, with specific properties dependent on the synthesis method and the presence of any associated salts or solvents. It may exhibit varying solubility characteristics in different solvents, which can be advantageous for its potential use in solution-based processes.
Synthesis and Applications:
Synthesis of this involves intricate chemical procedures and may often require expertise in organic synthesis. The compound’s synthesis typically involves the reaction of suitable precursors under controlled conditions, with careful consideration of the desired yield and purity.
Given its unique structural properties, it exhibits promising potential for applications in the field of medicinal chemistry, agrochemicals, and materials science. Researchers are exploring its use as a key building block in the development of novel pharmaceutical agents, agrochemicals with improved efficacy, and functional materials with tailored properties. Its structural versatility and reactivity offer opportunities for the design and development of new compounds with enhanced biological or material-specific activities.
Moreover, the functional groups present in the molecule make it a potential candidate for derivatization and modification to impart specific properties, enabling the synthesis of tailored derivatives for targeted applications.
In conclusion, it represents a fascinating compound with intriguing chemical and physical properties, offering diverse possibilities for applications in various scientific domains, including pharmaceuticals, agrochemicals, and materials science. Further research and exploration of its properties can potentially lead to the development of innovative and beneficial products for a range of industries.
Additional information
| Pack Size | 50mg |
|---|
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