Cas no 32827-61-5 (2-[(methylamino)(sulfanyl)methylidene]propanedinitrile)
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile Chemical and Physical Properties
Names and Identifiers
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- 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile
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- MDL: MFCD00171150
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| abcr | AB161176-1 g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile |
32827-61-5 | 1 g |
€211.30 | 2023-07-20 | ||
| abcr | AB161176-5 g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile |
32827-61-5 | 5 g |
€377.50 | 2023-07-20 | ||
| abcr | AB161176-10 g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile |
32827-61-5 | 10 g |
€482.50 | 2023-07-20 | ||
| abcr | AB161176-1g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile; . |
32827-61-5 | 1g |
€211.30 | 2024-06-10 | ||
| abcr | AB161176-5g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile; . |
32827-61-5 | 5g |
€377.50 | 2024-06-10 | ||
| abcr | AB161176-10g |
((Methylamino)sulfanylmethylene)methane-1,1-dicarbonitrile; . |
32827-61-5 | 10g |
€482.50 | 2024-06-10 | ||
| Key Organics Ltd | MS-6797-1MG |
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile |
32827-61-5 | >90% | 1mg |
£37.00 | 2023-03-20 | |
| Key Organics Ltd | MS-6797-5MG |
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile |
32827-61-5 | >90% | 5mg |
£46.00 | 2023-03-20 | |
| Key Organics Ltd | MS-6797-10MG |
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile |
32827-61-5 | >90% | 10mg |
£63.00 | 2023-03-20 | |
| Key Organics Ltd | MS-6797-20MG |
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile |
32827-61-5 | >90% | 20mg |
£76.00 | 2023-03-20 |
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile Related Literature
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Shaun D. Wong,Edward I. Solomon Dalton Trans., 2014,43, 17567-17577
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Joseph W. Bennett,Diamond T. Jones,Blake G. Hudson,Joshua Melendez-Rivera,Robert J. Hamers,Sara E. Mason Environ. Sci.: Nano, 2020,7, 1642-1651
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Norihito Fukui,Keisuke Fujimoto,Hideki Yorimitsu,Atsuhiro Osuka Dalton Trans., 2017,46, 13322-13341
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Hanie Hashtroudi,Ian D. R. Mackinnon J. Mater. Chem. C, 2020,8, 13108-13126
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Helga Garcia,Rui Ferreira,Marija Petkovic,Jamie L. Ferguson,Maria C. Leit?o,H. Q. Nimal Gunaratne,Luís Paulo N. Rebelo Green Chem., 2010,12, 367-369
Additional information on 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile
Comprehensive Overview of 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile (CAS No. 32827-61-5)
2-[(methylamino)(sulfanyl)methylidene]propanedinitrile (CAS No. 32827-61-5) is a specialized organic compound that has garnered significant attention in recent years due to its unique chemical properties and potential applications. This compound, often referred to by its systematic name or CAS number, belongs to the class of propanedinitrile derivatives, which are known for their versatility in synthetic chemistry and material science. Researchers and industry professionals are increasingly exploring its utility in advanced material synthesis, pharmaceutical intermediates, and agrochemical formulations.
The molecular structure of 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile features a methylamino group and a sulfanyl moiety, which contribute to its reactivity and functional diversity. These functional groups make it a valuable building block for constructing more complex molecules. In the context of green chemistry, this compound has been studied for its potential role in sustainable synthesis processes, aligning with the global push toward environmentally friendly chemical practices.
One of the most frequently searched questions related to this compound is: "What are the applications of 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile in pharmaceuticals?" Recent studies suggest that it may serve as a precursor for bioactive molecules, particularly in the development of antimicrobial agents and enzyme inhibitors. Its ability to form stable intermediates makes it a candidate for drug discovery programs, where precision and efficiency are paramount.
Another area of interest is the compound's role in material science. With the rise of nanotechnology and smart materials, researchers are investigating how 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile can be incorporated into polymeric networks or coating systems to enhance durability and performance. This aligns with the growing demand for high-performance materials in industries such as automotive, aerospace, and electronics.
From a synthetic chemistry perspective, the compound's reactivity with nucleophiles and electrophiles has been a topic of extensive research. Its cyano groups provide multiple sites for chemical modification, enabling the creation of diverse derivatives. This flexibility is particularly valuable in combinatorial chemistry, where rapid generation of molecular libraries is essential for screening potential leads.
In the context of analytical chemistry, 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile has been utilized as a chromatographic standard due to its well-defined properties. Its stability under various conditions makes it suitable for quality control applications in laboratories. Additionally, its spectral characteristics (e.g., UV-Vis absorption and NMR signals) are often referenced in method development.
The compound's safety profile and handling precautions are also frequently queried. While it is not classified as a hazardous substance under standard regulations, proper laboratory practices should always be followed. This includes the use of personal protective equipment (PPE) and adherence to waste disposal protocols. These considerations are critical for maintaining workplace safety and compliance with environmental regulations.
Looking ahead, the potential of 2-[(methylamino)(sulfanyl)methylidene]propanedinitrile in emerging technologies cannot be overstated. As industries continue to prioritize innovation and sustainability, this compound is poised to play a pivotal role in shaping future advancements. Whether in pharmaceuticals, materials, or analytical applications, its versatility ensures it remains a subject of ongoing research and development.
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