
AgrochemicalsAldicarb Impurity 3
Original price was: ₹60,000.00.₹50,000.00Current price is: ₹50,000.00.
Name:Aldicarb-oxime
CAT. NO.:SAA-06-C
CAS NO.:1646-75-9
- Description
- Datasheet
- Additional information
Description
Aldicarb Impurity 3
| Chemical Name | Aldicarb-oxime |
| Catalog Number | SAA-06-C |
| Parent AI | Aldicarb |
| Synonyms | 2-(Methylthio)-2-methylpropionaldehyde Oxime; 2-Methyl-2-(methylthio)propanal Oxime; 2-Methyl-2-(methylthio)propionaldehyde Oxime; 2-Methyl-2-(methylthio)propionaldoxime |
| CAS Number | 1646-75-9 |
| Molecular Formula | C₅H₁₁NOS |
| Molecular Weight | 133.21 |
| Appearance | liquid |
| Melting Point | 21.1°C |
Shipping & Storage Information
|
Storage0-6°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; Pesticides |
| Description &Applications | 2-Methyl-2-(methylthio)propionaldehyde oxime (MMPO) is an organic compound that has become increasingly popular in scientific research due to its unique properties and potential applications. MMPO is a colorless solid with a melting point of -50°C and a boiling point of 115°C. It is a chiral compound, meaning it can exist in two mirror-image forms, and it is an important reagent used in asymmetric synthesis. It has been used in a variety of research fields, such as biochemistry, pharmacology, and medicinal chemistry. |
| References | Ashby, J., et al.: Environ. Mutagen., 7, 919 (1985), Ashby, J., et al.: Mutat. Res., 257, 229 (1991), Kazius, J., et al.: J. Med. Chem., 48, 312 (2005), Benigni, R., et al.: Mutagenesis, 25, 335 (2010) |
Aldicarb-Oxime: Exploring a Fascinating Chemical Compound
In the realm of chemical compounds, Aldicarb-oxime stands out as a remarkable and intriguing member. This compound, characterized by its unique structure and diverse applications, has captured the attention of researchers, scientists, and industries alike. Its synthesis, properties, and various uses make it a subject of interest for those delving into the world of chemistry and its practical implications.
Synthesis and Structure: Aldicarb-oxime, chemically represented as C7H14N4O3S, is derived from Aldicarb, a carbamate insecticide. The process of synthesizing Aldicarb-oxime involves introducing an oxygen atom and an amidino group (-C(=NH)NH2) into the molecular structure of Aldicarb. This transformation results in a compound with altered properties and potential applications.
The structural modification leads to the formation of Aldicarb-oxime, which exhibits an intriguing arrangement of atoms. The distinct arrangement of nitrogen, oxygen, sulfur, and carbon atoms contributes to its unique characteristics and functionality.
Properties and Applications: Aldicarb-oxime possesses a range of physical and chemical properties that render it suitable for various applications:
- Insecticide Development: Building upon the foundation of Aldicarb, Aldicarb-oxime exhibits insecticidal properties that can be harnessed for pest control. Its targeted action against certain insect species makes it a potential candidate for integrated pest management strategies.
- Chemical Reactions: The presence of functional groups within Aldicarb-oxime makes it a valuable reagent in organic synthesis. Its participation in various chemical reactions can lead to the creation of new molecules and compounds with diverse properties.
- Biological Studies: Researchers have explored Aldicarb-oxime’s potential in biochemistry and molecular biology. Its interactions with biomolecules and biological systems provide insights into fundamental processes and contribute to advancements in the life sciences.
- Environmental Monitoring: The use of Aldicarb-oxime as a marker molecule allows researchers to trace its presence and behavior in environmental studies. This aids in monitoring and understanding chemical processes in different ecosystems.
- Medicinal Chemistry: The structural characteristics of Aldicarb-oxime offer opportunities for medicinal chemists to explore its potential in drug design. Its interaction with biological receptors could lead to the development of novel therapeutic agents.
Challenges and Future Prospects: Despite its promising attributes, Aldicarb-oxime also presents challenges and considerations. Its potential toxicity, environmental impact, and regulatory aspects must be thoroughly assessed before widespread application. Additionally, further research is needed to uncover its complete range of properties and potential applications, as well as to optimize its synthesis for efficiency and sustainability.
In the coming years, as scientific knowledge advances and our understanding of chemical compounds deepens, Aldicarb-oxime may find its place in an array of fields, from agriculture to medicine, and from environmental science to materials chemistry. Its versatile nature and adaptability make it an exciting area of exploration for researchers seeking to unravel its mysteries and unlock its full potential.
Additional information
| Pack Size | 50mg |
|---|
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