AgrochemicalsAmicarbazone Impurity 3
Original price was: ₹60,000.00.₹50,000.00Current price is: ₹50,000.00.
Name:N-tert-Butyl-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide
CAT. NO.:SAA-09-C
CAS NO.:889062-05-9
- Description
- Datasheet
- Additional information
Description
Amicarbazone Impurity 3
| Chemical Name | N-tert-Butyl-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide |
| Catalog Number | SAA-09-C |
| Parent AI | Amicarbazone |
| Synonyms | N-(1,1-Dimethylethyl)-2,5-dihydro-3-(1-methylethyl)-5-oxo-1H-1,2,4-triazole-1-carboxamide |
| CAS Number | 889062-05-9 |
| Molecular Formula | C₁₀H₁₈N₄O₂ |
| Molecular Weight | 226.28 |
| Appearance | White to Off-White Solid |
| Melting Point | 203-205°C |
Shipping & Storage Information
|
Storage-20°C, 203-205°C
Shipping: Free Shipping at Room Temperature in INDIA, may vary elsewhere Stability: Datasheet |
| Solubility | Chloroform (Slightly), DMSO (Slightly), Methanol (Slightly) |
| Stability | Stable under recommended storage conditions |
| Category | Standards; Environmental Standards, Mutagens and Metabolites; |
| Description &Applications | N-(tert-Butyl)-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide (t-Bu-IPT-CO) is a synthetic compound with a wide range of applications in scientific research. It is a versatile molecule with a unique structure and properties, making it a promising candidate for use in a variety of experiments. t-Bu-IPT-CO has been used in a variety of fields, from biochemistry to drug design, and has been studied extensively in the past few decades. |
| References | Dayan, F., et al.: Weed Science, 57, 579 (2009); Elmore, M., et al.: Weed Technol., 27, 596 (2013); Dong, M., et al.: J. Sep. Sci., 38, 2245 (2015) |
he world of organic chemistry is a realm of intricate and fascinating molecules, each with its own unique properties and potential applications. Among these, the compound N-tert-Butyl-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide stands out as an intriguing and versatile molecular entity. With its complex structure and potential for diverse functionalities, this compound has garnered significant interest in both academic research and industrial applications.
Structural Complexity and Composition: N-tert-Butyl-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide, often referred to as N-tBu-TRZ, showcases a captivating arrangement of atoms. Its systematic nomenclature reveals the presence of multiple functional groups, each contributing to its distinctive properties. The compound consists of a 1,2,4-triazole ring, which is a five-membered ring composed of three carbon atoms and two nitrogen atoms. This ring is fused with a carbonyl group (C=O), introducing a ketone functionality. Furthermore, an isopropyl group (-C(CH3)2CH3) and a tert-butyl group (-C(CH3)3) are attached to specific carbon atoms in the triazole ring. The overall composition imparts unique steric and electronic characteristics to the molecule.
Synthetic Routes and Applications: The synthesis of N-tBu-TRZ involves intricate organic reactions, requiring skilled techniques and a deep understanding of chemical principles. Researchers have devised various synthetic routes to access this compound, often involving multistep processes to ensure high yields and purity. Once obtained, N-tBu-TRZ serves as a valuable building block for the synthesis of diverse molecules in medicinal chemistry, materials science, and agrochemical research.
In the realm of medicinal chemistry, N-tBu-TRZ’s structural complexity and functional groups offer avenues for drug design and development. Researchers explore its potential as a scaffold for creating novel pharmaceutical agents, targeting a wide array of biological pathways and therapeutic targets. Its unique molecular architecture can be modified to enhance bioavailability, optimize pharmacokinetics, and improve interactions with biological receptors.
In materials science, N-tBu-TRZ finds utility in the design and fabrication of advanced materials. Its diverse functional groups enable its incorporation into polymers, coatings, and composite materials, imparting desired mechanical, thermal, and electronic properties. Moreover, the compound’s ability to undergo various chemical transformations opens doors to the creation of tailor-made materials for specific applications, ranging from electronics to nanotechnology.
Challenges and Future Prospects: Despite its potential, working with N-tBu-TRZ presents challenges due to its intricate structure and demanding synthesis. Ensuring reproducibility and scalability of its synthesis remains a focus of ongoing research. Additionally, elucidating the compound’s full spectrum of properties and applications requires multidisciplinary collaboration and innovative techniques.
As research progresses, N-tert-Butyl-3-isopropyl-5-oxo-4,5-dihydro-1H-1,2,4-triazole-1-carboxamide will likely continue to captivate the attention of chemists and researchers. Its unique blend of functional groups, structural complexity, and potential applications positions it as a captivating subject of study, promising breakthroughs in medicine, materials, and beyond.
Additional information
| Pack Size | 50mg |
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