AgrochemicalsBuprofezin Impurity 1
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Buprofezin Impurity 1
Name:1-isopropyl-3-phenylurea
CAT. NO.:SAB-14-A
CAS NO.:19895-44-4
- Description
- Datasheet
- Additional information
Description
Buprofezin Impurity 1
| Chemical Name | 1-isopropyl-3-phenylurea |
| Catalog Number | SAB-14-A |
| Parent AI | Buprofezin |
| Synonyms | 3-Isopropyl-1-phenylurea; N-Isopropyl-N’-phenylurea; N-Phenyl-N’-(1-methylethyl)urea; 1-Phenyl-3-(propan-2-yl)urea |
| CAS Number | 19895-44-4 |
| Molecular Formula | C₁₀H₁₄N₂O |
| Molecular Weight | 178.23 |
| Appearance | white crystalline solid |
| Melting Point | 142-143 °C |
| 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 | 1-Isopropyl-3-phenylurea (IPPU) is an organic compound that is widely used in scientific research. It is a derivative of urea, which is a nitrogen-containing compound found in many living organisms. IPPU has been used in a variety of laboratory experiments, including the synthesis of other organic compounds, the study of biochemical and physiological effects, and the investigation of mechanisms of action. |
| References | Verevkin, S. P., et al.: J. Chem. Thermo., 132, 439 (2019) |
Organic compounds play a pivotal role in various industries and scientific research, offering a wide range of applications in fields as diverse as pharmaceuticals, agriculture, and materials science. One such compound, 1-Isopropyl-3-Phenylurea, has garnered attention for its unique properties and versatile applications. In this article, we delve into the characteristics, synthesis, and potential uses of this intriguing compound.
Chemical Structure and Characteristics:
1-Isopropyl-3-Phenylurea, with the molecular formula C11H15N3O, is a member of the urea class of organic compounds. Its chemical structure consists of a urea backbone, with an isopropyl group (CH3CHCH3) attached to one nitrogen atom and a phenyl group (C6H5) attached to another. This arrangement imparts distinctive properties to the compound, making it a subject of interest for researchers in various disciplines.
Synthesis:
The synthesis of 1-Isopropyl-3-Phenylurea involves several steps and reactions. One common method includes the reaction between phenylisocyanate and isopropylamine under controlled conditions. This process typically requires expertise in organic synthesis and careful manipulation of reaction parameters to achieve optimal yields and purity.
Applications:
- Pharmaceuticals: The diverse chemical structure of 1-Isopropyl-3-Phenylurea has prompted investigations into its potential pharmaceutical applications. Researchers have explored its ability to interact with biological systems, making it a candidate for drug development. It could serve as a scaffold for designing new compounds with enhanced biological activity, particularly in areas like antiviral or anticancer research.
- Agriculture: Organic compounds often find utility in agriculture, and 1-Isopropyl-3-Phenylurea is no exception. Its unique chemical properties could make it suitable for developing new agrochemicals, such as pesticides or growth regulators. Research into its effects on plant growth, disease resistance, and insect control could unlock valuable insights for sustainable agriculture.
- Materials Science: The phenyl group in the compound’s structure gives it potential in materials science. Researchers have explored its use as a building block for synthesizing novel materials with specific properties. These materials could find applications in fields such as coatings, adhesives, and electronic devices.
- Catalysis: Organic compounds often exhibit catalytic properties, facilitating various chemical reactions. 1-Isopropyl-3-Phenylurea could potentially serve as a catalyst or catalyst precursor in certain reactions, aiding in the efficient synthesis of other compounds.
Challenges and Future Prospects:
Despite its potential applications, the use of 1-Isopropyl-3-Phenylurea presents challenges. Its complex synthesis process and potential toxicity necessitate thorough research and testing. Additionally, its precise mechanisms of action in various applications require further investigation.
In the coming years, as research and technology continue to advance, we can expect to see increased understanding and utilization of 1-Isopropyl-3-Phenylurea across multiple industries. As scientists uncover new properties and applications, this compound may contribute to innovations that address pressing challenges in healthcare, agriculture, and materials science.
Additional information
| Pack Size | 50mg |
|---|
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