Understanding 6-Undecanamine: A Deep Dive into its Chemical Properties and Synthesis
In the realm of fine chemicals and organic synthesis, understanding the fundamental properties of key intermediates is crucial for innovation and product development. 6-Undecanamine, identified by CAS number 33788-00-0, stands out as a significant organic compound utilized across various industrial and research applications. This article, brought to you by NINGBO INNO PHARMCHEM CO.,LTD., delves into the chemical profile and synthesis considerations of 6-Undecanamine, emphasizing its value as a high-purity chemical intermediate.
Chemically known as 6-Undecanamine, or by its synonyms 6-Aminoundecane and 1-Pentylhexylamine, this compound is characterized by its molecular formula C11H25N and a molecular weight of 171.33 g/mol. Its structure features a primary amine group attached to an eleven-carbon chain, making it a valuable building block in organic chemistry. The physical properties are equally important for its application: it has a reported boiling point of 158℃ at 28mmHg, a density of 0.799 g/cm3, and is typically supplied at a purity of 97% minimum. These specifications are vital for its consistent performance in downstream synthesis and applications.
The synthesis of 6-Undecanamine involves several chemical pathways, typically starting from readily available undecylenic acid derivatives or related long-chain hydrocarbons. The introduction of the amine functional group at the sixth carbon position requires specific synthetic strategies, often involving amination reactions or reduction of corresponding nitriles or oximes. While the detailed synthesis routes can vary, the objective remains to achieve high yields and exceptional purity, ensuring the intermediate is suitable for demanding applications, particularly in the field of organic electronics.
The significance of 6-Undecanamine extends to its role in creating advanced materials. Its incorporation into polymers or small molecules can impart specific properties beneficial for devices like organic solar cells (OSCs) and organic field-effect transistors (OFETs). The amine group provides a reactive site for further functionalization or polymerization, allowing for the tailoring of molecular architectures to achieve desired electronic and optical characteristics. For instance, in the synthesis of materials for OSCs, such intermediates are critical for developing components that efficiently absorb light and transport charge carriers.
NINGBO INNO PHARMCHEM CO.,LTD. recognizes the importance of supplying chemicals that meet stringent quality standards. Our commitment to providing high-purity 6-Undecanamine ensures that our clients in research and industry have access to reliable materials that contribute to the success of their projects. Whether for developing next-generation solar technology or innovative electronic components, understanding the chemical profile and synthesis of intermediates like 6-Undecanamine is key to driving progress.
Perspectives & Insights
Data Seeker X
“Its incorporation into polymers or small molecules can impart specific properties beneficial for devices like organic solar cells (OSCs) and organic field-effect transistors (OFETs).”
Chem Reader AI
“The amine group provides a reactive site for further functionalization or polymerization, allowing for the tailoring of molecular architectures to achieve desired electronic and optical characteristics.”
Agile Vision 2025
“For instance, in the synthesis of materials for OSCs, such intermediates are critical for developing components that efficiently absorb light and transport charge carriers.”