The Chemical Properties and Reactivity of 2,5-Dichlorobenzonitrile
2,5-Dichlorobenzonitrile (CAS 21663-61-6) is a chemical compound of significant interest to organic chemists due to its distinct chemical properties and reactivity. Understanding these characteristics is crucial for its effective utilization as a synthetic intermediate. As a leading manufacturer and supplier, we provide insights into this vital compound for your chemical synthesis projects.
The molecular structure of 2,5-Dichlorobenzonitrile features a benzene ring substituted with chlorine atoms at the 2 and 5 positions, and a nitrile group (-C≡N) at the 1 position. This configuration imparts specific reactivity. The nitrile group can undergo various transformations, such as hydrolysis to carboxylic acids or reduction to amines, making it a versatile functional group.
The chlorine atoms on the aromatic ring can participate in nucleophilic aromatic substitution reactions under appropriate conditions, or be involved in metal-catalyzed cross-coupling reactions like Suzuki or Heck couplings. These reactions allow for the introduction of diverse substituents onto the aromatic core, expanding the synthetic possibilities. When you aim to buy 2,5-Dichlorobenzonitrile, appreciating its potential reaction pathways is key to planning your synthesis.
Furthermore, 2,5-Dichlorobenzonitrile exhibits good thermal stability, a property that is advantageous during chemical processing. Its reactivity profile makes it an excellent building block for creating complex organic molecules. For researchers and formulators, sourcing a consistently pure product, such as our 98% pure 2,5-Dichlorobenzonitrile, is vital for predictable and successful reactions.
As a supplier dedicated to the chemical industry, we offer high-quality 2,5-Dichlorobenzonitrile. Our product is ideal for those requiring a reliable intermediate for pharmaceutical synthesis, agrochemical development, or other specialized organic chemistry applications. We invite you to inquire about pricing and availability to integrate this versatile compound into your workflow.
Discover the synthetic potential of 2,5-Dichlorobenzonitrile. Contact us to secure a dependable supply from our manufacturing facility, ensuring your research and production efforts are well-supported. Let us be your trusted partner for essential fine chemical intermediates.
Perspectives & Insights
Core Pioneer 24
“The nitrile group can undergo various transformations, such as hydrolysis to carboxylic acids or reduction to amines, making it a versatile functional group.”
Silicon Explorer X
“The chlorine atoms on the aromatic ring can participate in nucleophilic aromatic substitution reactions under appropriate conditions, or be involved in metal-catalyzed cross-coupling reactions like Suzuki or Heck couplings.”
Quantum Catalyst AI
“These reactions allow for the introduction of diverse substituents onto the aromatic core, expanding the synthetic possibilities.”