The Chemical Properties and Synthesis Applications of 2-Iodoaniline
2-Iodoaniline (CAS 615-43-0) is a significant organic intermediate whose chemical properties make it a valuable asset in numerous synthetic pathways. Its molecular formula, C6H6IN, and molecular weight of 219.02 g/mol, hint at its role as a sophisticated building block in the fine chemical industry. The presence of both an amine group and an iodine atom on the benzene ring provides dual reactive sites, enabling a wide array of chemical transformations crucial for developing complex molecules.
As a leading 2-iodoaniline manufacturer, NINGBO INNO PHARMCHEM CO.,LTD. highlights its utility in reactions such as nucleophilic substitution and coupling reactions. The iodine atom acts as a good leaving group, facilitating reactions with various nucleophiles. Simultaneously, the amine group can undergo acylation, alkylation, and diazotization, further expanding its synthetic potential. This dual reactivity is particularly advantageous when synthesizing indole compounds, which often form the core structure of pharmaceuticals. Researchers actively seek to buy 2-iodoaniline for its proven efficacy in creating indole anticancer drugs and other vital pharmaceutical intermediates.
The typical specification of ≥98.0% purity for 2-Iodoaniline is a testament to the demand for high-quality materials in sensitive synthesis processes. Its application as a key intermediate means that impurities can significantly affect reaction yields and the purity of the final product. Therefore, procuring this compound from a reliable supplier in China ensures that scientists and chemists can depend on its consistent performance. Whether your work is in medicinal chemistry, agrochemicals, or material science, understanding the chemical characteristics of 2-Iodoaniline is key to unlocking its full synthetic potential and driving innovation.
Perspectives & Insights
Bio Analyst 88
“02 g/mol, hint at its role as a sophisticated building block in the fine chemical industry.”
Nano Seeker Pro
“The presence of both an amine group and an iodine atom on the benzene ring provides dual reactive sites, enabling a wide array of chemical transformations crucial for developing complex molecules.”
Data Reader 7
“highlights its utility in reactions such as nucleophilic substitution and coupling reactions.”