CAS · 647829-43-4
Product Overview
4,4-Sulfinylbis(Iodobenzene) is a high-purity electronic-chemicals supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | White to light yellow solid |
|---|---|
| Identification (1H NMR): | Conformance to structure |
| Purity (HPLC): | 98.0% min |
Applications
1. Organic Synthesis
● 4,4-Sulfinylbis(iodobenzene) is used as an important intermediate in the synthesis of functionalized organic compounds, particularly in the formation of aryl sulfonyl derivatives.
● The sulfinyl group (-SO-) offers a reactive site for further chemical transformations, such as nucleophilic substitution, which allows for the introduction of diverse functional groups to the aromatic ring.
● Commonly utilized in the synthesis of sulfonylated aromatic compounds that have applications in pharmaceuticals and material sciences.
2. Cross-Coupling Reactions
● The presence of iodine atoms in the molecule makes it a suitable candidate for cross-coupling reactions like the Suzuki or Heck reactions, where it acts as an effective halide source.
● This makes 4,4-sulfinylbis(iodobenzene) valuable in the synthesis of biaryl compounds and other heterocyclic structures, which are key intermediates in the preparation of various bioactive molecules.
3. Electronics and OLED Materials
● Due to its aromatic and halogenated structure, this compound can be used in the development of organic semiconductors and materials for organic light-emitting diodes (OLEDs).
● The iodobenzene groups can help to improve the electronic properties of the material, making it useful in electronic devices, displays, and other optical applications.
4. Pharmaceutical Synthesis
● As a building block, 4,4-sulfinylbis(iodobenzene) can be involved in the synthesis of pharmaceutical intermediates.
● Its ability to incorporate functional groups such as sulfonyl and iodine provides versatility in creating molecules with potential therapeutic properties such as anti-inflammatory, antiviral, or anticancer activities.
● It has been utilized in the synthesis of sulfonamide derivatives and other biologically active compounds.
5. Materials Science and Coordination Chemistry
● The iodine atoms in 4,4-sulfinylbis(iodobenzene) offer a means to create coordination complexes with metal ions for various applications in catalysis or materials science.
● It can be used in the synthesis of metal-organic frameworks (MOFs) or other nanomaterials with unique electronic and chemical properties.
Benefits
1. Reactivity in Cross-Coupling Reactions
● The iodine atoms in 4,4-Sulfinylbis(Iodobenzene)丨CAS 647829-43-4 make it a highly reactive and versatile intermediate in cross-coupling reactions, allowing for the construction of complex organic molecules with precision.
2. Useful in Fine Chemical Synthesis
● Its ability to introduce functional groups like sulfonyl groups, which are commonly found in bioactive molecules, makes it a useful building block in the pharmaceutical and fine chemicals industries.
3. Enhancement of Electronic Properties
● The halogenated aromatic structure enhances its conductivity and makes it suitable for use in electronic materials, particularly in devices like OLEDs, which require organic semiconductors.
4. Biologically Relevant Derivatives
● When used in medicinal chemistry, it enables the creation of compounds with biologically active functionalities, making it a crucial intermediate for drug development.
5. Compatibility with Various Reaction Conditions
● The molecule is stable under a variety of synthetic conditions, allowing it to be used in multi-step synthesis and large-scale production.
Conclusion
4,4-Sulfinylbis(Iodobenzene)丨CAS 647829-43-4 is a valuable chemical intermediate in organic synthesis, particularly for cross-coupling reactions, pharmaceutical synthesis, and the creation of functionalized materials. Its combination of reactive iodine atoms and a sulfinyl group makes it highly versatile in the creation of complex molecules for use in electronics, drug development, and fine chemical manufacturing. This compound plays a significant role in advancing materials science and medicinal chemistry, offering multiple pathways for the development of innovative technologies and therapeutics.
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Conclusion
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