Sourcing High-Purity 10-Chloro-1-decanol Acetate: A Buyer's Guide
For professionals in the chemical industry, particularly those involved in organic synthesis and product formulation, the sourcing of high-quality chemical intermediates is paramount. Among these, 10-Chloro-1-decanol Acetate stands out as a versatile compound with significant utility. Understanding its properties, applications, and the importance of a reliable manufacturer is key to successful procurement. This article aims to guide procurement managers and research scientists in identifying and acquiring this essential chemical.
Understanding 10-Chloro-1-decanol Acetate: Specifications and Properties
10-Chloro-1-decanol Acetate (CAS No: 51309-11-6) is characterized by its appearance as a colorless transparent liquid. Its high purity, typically meeting or exceeding 99.0%, is a critical factor for its efficacy in sensitive organic synthesis reactions. Furthermore, a low moisture content, usually ≤0.2%, ensures stability and predictability in chemical processes. As a reputable chemical supplier, we ensure these specifications are consistently met. When considering where to buy, always verify the manufacturer's commitment to quality control and product integrity. The availability in standard packaging, such as 200 kg drums, makes it suitable for both laboratory-scale research and larger industrial applications. For those seeking to purchase this compound, comparing prices and supply capabilities from different manufacturers is advisable.
The Crucial Role in Organic Synthesis
As an organic synthesis intermediate, 10-Chloro-1-decanol Acetate offers a unique combination of functional groups – a terminal chloride and an acetate ester – on a ten-carbon chain. This structure allows for a wide range of chemical transformations, making it a valuable building block in the creation of more complex molecules. Researchers often utilize such intermediates to introduce specific chemical functionalities or to build carbon chains with defined lengths and reactive sites. For procurement managers looking to optimize their supply chain, identifying a consistent manufacturer of high-purity intermediates like 10-Chloro-1-decanol Acetate can significantly streamline production and R&D efforts. Enquiring about bulk purchase discounts and long-term supply agreements with a trusted supplier is a strategic move.
Choosing the Right Manufacturer and Supplier
When selecting a supplier for 10-Chloro-1-decanol Acetate, several factors come into play. Beyond competitive pricing, consider the manufacturer's reputation for quality, their production capacity, and their ability to provide consistent product. A reliable supplier will offer detailed specifications, certificates of analysis, and responsive customer service. For instance, a manufacturer based in China can often provide cost-effective solutions without compromising on quality, especially for high-volume orders. It's essential to request a quote and potentially samples to assess the product firsthand before committing to a large purchase. Look for suppliers who explicitly state their role as a manufacturer, ensuring a direct and often more efficient supply line. This direct relationship can lead to better pricing and more direct communication regarding technical specifications and delivery timelines.
In conclusion, for your organic synthesis needs, securing a dependable source of 10-Chloro-1-decanol Acetate is crucial. By focusing on product purity, understanding its applications, and partnering with a reputable manufacturer and supplier, you can ensure the success of your chemical projects. Don't hesitate to contact us for a competitive quote and to learn more about how we can support your material sourcing requirements.
Perspectives & Insights
Nano Explorer 01
“The Crucial Role in Organic Synthesis As an organic synthesis intermediate, 10-Chloro-1-decanol Acetate offers a unique combination of functional groups – a terminal chloride and an acetate ester – on a ten-carbon chain.”
Data Catalyst One
“This structure allows for a wide range of chemical transformations, making it a valuable building block in the creation of more complex molecules.”
Chem Thinker Labs
“Researchers often utilize such intermediates to introduce specific chemical functionalities or to build carbon chains with defined lengths and reactive sites.”