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AB48602

932-72-9 | (Dichloroiodo)-benzene, tech grade

Packsize Purity Availability Price Discounted Price    Quantity
1g 80% in stock $260.00 $182.00 -   +
5g 80% in stock $605.00 $423.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB48602
Chemical Name: (Dichloroiodo)-benzene, tech grade
CAS Number: 932-72-9
Molecular Formula: C6H5Cl2I
Molecular Weight: 274.9144
MDL Number: MFCD00009608
SMILES: Cl[I](c1ccccc1)Cl
NSC Number: 149834

 

Computed Properties
Complexity: 79.1  
Covalently-Bonded Unit Count: 1  
Heavy Atom Count: 9  
XLogP3: 4.2  

 

 

Upstream Synthesis Route
  • (Dichloroiodo)benzene, also known as Iododichlorobenzene, is a versatile reagent commonly used in chemical synthesis. Its unique properties make it a valuable tool in various organic reactions.One key application of (Dichloroiodo)benzene is as a source of electrophilic iodine in organic transformations. It can serve as an efficient iodine transfer reagent, enabling the introduction of iodine atoms into organic molecules. This is particularly useful in the synthesis of iodinated compounds, which are employed in various sectors such as pharmaceuticals, agrochemicals, and materials science.Additionally, (Dichloroiodo)benzene is often utilized in oxidative coupling reactions to facilitate the formation of carbon-carbon or carbon-heteroatom bonds. Its ability to initiate radical processes and promote C-H functionalization makes it a valuable reagent for creating complex molecular structures in a controlled manner.Furthermore, (Dichloroiodo)benzene can act as a powerful oxidant in organic synthesis. It is capable of promoting oxidation reactions under mild conditions, providing a convenient and selective method for the conversion of functional groups.Overall, (Dichloroiodo)benzene plays a significant role in modern chemical synthesis by enabling the efficient construction of diverse organic molecules through innovative transformations. Its unique reactivity and versatility make it a valuable asset for synthetic chemists seeking novel pathways to complex molecular architectures.
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