4-Iodoaniline (CAS 540-37-4): A Key Intermediate for Specialty Chemical Manufacturers
Specialty chemical manufacturers are constantly seeking versatile intermediates that can be leveraged across a spectrum of advanced applications. 4-Iodoaniline (CAS 540-37-4) fits this description perfectly, offering a unique combination of reactivity and structural potential. As a manufacturer dedicated to supplying high-quality fine chemicals, we understand the critical role this compound plays in driving innovation for our clients.
The Chemical Foundation of 4-Iodoaniline's Utility
4-Iodoaniline, a white crystalline solid with the formula C6H6IN and CAS number 540-37-4, possesses a key structural feature: an iodine atom attached to the aromatic ring, in the para position to an amino group. This iodine atom is highly susceptible to displacement and participates readily in a variety of powerful cross-coupling reactions. These reactions are cornerstones of modern organic synthesis, allowing for the precise construction of complex molecules. For specialty chemical manufacturers, this means 4-iodoaniline can be readily transformed into a multitude of advanced compounds.
Applications Driving Demand for 4-Iodoaniline:
- Pharmaceutical Intermediates: This is arguably the largest application area. 4-Iodoaniline is a pivotal intermediate for synthesizing numerous APIs. Its structure can be elaborated through C-C coupling (e.g., Suzuki, Sonogashira) or C-N coupling reactions (e.g., Buchwald-Hartwig) to build complex drug scaffolds. Manufacturers producing intermediates for the pharmaceutical industry rely on a consistent supply of high-purity 4-iodoaniline.
- Electronic Materials: The aromatic nature and the reactive iodine substituent make 4-iodoaniline a candidate for developing organic electronic materials. Derivatives can be incorporated into organic semiconductors, OLED materials, or electrochromic compounds, contributing to the advancement of display technology and organic electronics.
- Agrochemicals: Similar to pharmaceuticals, the agrochemical sector utilizes intermediates like 4-iodoaniline to synthesize novel pesticides, herbicides, and fungicides. The ability to functionalize the aromatic ring allows for the fine-tuning of biological activity and environmental persistence.
- Research Chemicals: For academic institutions and R&D departments, 4-iodoaniline is a staple reagent for exploratory synthesis and methodology development. Its predictable reactivity and commercial availability make it an ideal starting material for novel research projects.
Why Partner with a Specialized Supplier?
For specialty chemical manufacturers, sourcing intermediates like 4-Iodoaniline (CAS 540-37-4) demands a partner who understands their quality and supply needs. As a dedicated manufacturer in China, we offer:
- Guaranteed Purity (≥98%): Ensuring optimal reaction yields and product integrity, critical for specialty applications.
- Scalable Supply: We are equipped to handle requests from R&D quantities to bulk commercial orders, ensuring continuity for your manufacturing processes. Our productivity is over 100 tons.
- Competitive Pricing: We provide cost-effective solutions without compromising on quality, allowing manufacturers to maintain competitive product pricing.
- Reliable Delivery: Our robust logistics ensure timely delivery to global destinations, minimizing downtime for your operations.
By choosing us as your supplier for 4-Iodoaniline, specialty chemical manufacturers gain a trusted ally in their pursuit of innovation and product excellence. We encourage you to reach out for a quote and to discuss how our high-quality intermediate can support your next groundbreaking project.
Perspectives & Insights
Chem Catalyst Pro
“Manufacturers producing intermediates for the pharmaceutical industry rely on a consistent supply of high-purity 4-iodoaniline.”
Agile Thinker 7
“Electronic Materials: The aromatic nature and the reactive iodine substituent make 4-iodoaniline a candidate for developing organic electronic materials.”
Logic Spark 24
“Derivatives can be incorporated into organic semiconductors, OLED materials, or electrochromic compounds, contributing to the advancement of display technology and organic electronics.”