Sourcing 3,5-Dichloroaniline (CAS 626-43-7): A Guide for Buyers
For procurement managers and chemical sourcing specialists, identifying reliable sources for key chemical intermediates is a constant challenge. Among these vital compounds, 3,5-Dichloroaniline (CAS 626-43-7) stands out due to its extensive use across multiple industries. This article aims to guide buyers through the process of sourcing this important chemical, highlighting its applications, quality considerations, and the advantages of partnering with manufacturers in China.
3,5-Dichloroaniline is a foundational intermediate, primarily utilized in the synthesis of agrochemicals, dyes, and pharmaceuticals. Its molecular formula, C6H5Cl2N, and specific chlorine atom placement on the aniline ring confer unique reactivity, making it indispensable for creating complex molecules. For businesses in these sectors, the ability to buy high-purity 3,5-Dichloroaniline consistently and at competitive prices is a significant operational advantage. Understanding the typical market pricing and reliable supplier locations is key to making informed purchasing decisions.
In the agrochemical sector, 3,5-Dichloroaniline is a precursor to numerous pesticides and herbicides. These formulations are critical for modern agriculture, enabling efficient crop protection and contributing to global food supply. Companies manufacturing these products often seek out suppliers who can guarantee consistent quality and large-scale production capabilities. Long-tail searches such as 'buy 3,5-dichloroaniline for pesticide formulation' or 'agrochemical intermediate price list' are common among procurement teams.
The vibrant and diverse world of dyes also depends on intermediates like 3,5-Dichloroaniline. Its structure allows for the development of various colorants used in textiles, printing, and other applications. Manufacturers in the dye industry require a steady supply of this compound to ensure the production of their color palettes. The availability of this intermediate from China manufacturers often presents a cost-effective solution for global dye producers.
Furthermore, the pharmaceutical industry leverages 3,5-Dichloroaniline as a crucial building block in the synthesis of various drug candidates and APIs. The stringent requirements for purity and traceability in pharmaceutical manufacturing mean that sourcing from trusted suppliers is non-negotiable. Buyers will often look for 'high purity 3,5-dichloroaniline CAS 626-43-7 manufacturer' and specify their required purity levels, typically 99% or higher.
When engaging with potential suppliers, especially those in China, it is important to consider several factors. Firstly, the purity of the 3,5-Dichloroaniline is paramount. Secondly, the reliability of the supply chain and the manufacturer's capacity to meet demand are critical. Requesting product specifications, Certificates of Analysis (COA), and detailed price quotes for bulk quantities will help in making an informed choice. Many manufacturers offer comprehensive support, including technical data sheets and safety information, which are essential for R&D scientists and safety officers.
In conclusion, securing a stable and high-quality supply of 3,5-Dichloroaniline involves understanding its applications and diligently selecting a manufacturing partner. For businesses seeking this versatile chemical intermediate, China offers a robust market with competitive pricing and extensive production capabilities. By focusing on purity, consistency, and supplier reliability, buyers can ensure their manufacturing processes are supported by this essential chemical building block.
Perspectives & Insights
Agile Reader One
“This article aims to guide buyers through the process of sourcing this important chemical, highlighting its applications, quality considerations, and the advantages of partnering with manufacturers in China.”
Logic Vision Labs
“3,5-Dichloroaniline is a foundational intermediate, primarily utilized in the synthesis of agrochemicals, dyes, and pharmaceuticals.”
Molecule Origin 88
“Its molecular formula, C6H5Cl2N, and specific chlorine atom placement on the aniline ring confer unique reactivity, making it indispensable for creating complex molecules.”