Exploring the Chemical Properties and Synthesis of 2-(2-Pyridylethyl)trimethoxysilane
2-(2-Pyridylethyl)trimethoxysilane (CAS 27326-65-4) is a unique organosilane that combines the reactivity of trimethoxysilane with the versatile chemical nature of a pyridine ring. This dual functionality makes it a valuable compound in various industrial and research applications. NINGBO INNO PHARMCHEM CO.,LTD. specializes in providing high-purity chemical intermediates, including this significant organosilane.
The chemical structure of 2-(2-Pyridylethyl)trimethoxysilane is central to its utility. The trimethoxysilane moiety (-Si(OCH3)3) is the reactive part that allows for cross-linking and surface functionalization. Upon exposure to moisture, it undergoes hydrolysis to form silanol groups (-Si-OH), which then condense to form stable siloxane bonds (-Si-O-Si-). This process is critical for its function as a coupling agent, where it creates a bridge between inorganic substrates and organic polymers. The molecular formula is C10H17NO3Si, with a molecular weight of approximately 227.33 g/mol. Its boiling point is often cited around 105 °C at a reduced pressure of 0.3 mm Hg, and it possesses a refractive index of about 1.4755. The density is around 1.06 g/cm³.
The presence of the 2-pyridylethyl group adds a distinct dimension to its chemical profile. The pyridine ring is a heterocyclic aromatic compound containing a nitrogen atom, which can act as a Lewis base, coordinate with metal ions, or participate in various organic reactions. This means that 2-(2-Pyridylethyl)trimethoxysilane can not only enhance adhesion but also potentially act as a ligand in catalysis, a component in functional polymers, or a precursor for more complex organic synthesis. For those interested in acquiring this compound, understanding the properties of 2-(2-Pyridylethyl)trimethoxysilane is essential for its effective utilization.
The synthesis of such compounds typically involves coupling reactions between a pyridine-containing molecule and a silicon-containing precursor. For instance, a pyridylethyl halide could be reacted with a silane that has a nucleophilic site, or vice versa. The specific details of synthesis routes are often proprietary, but the goal is to create a stable molecule with both functional groups intact and reactive in their respective ways. When businesses look to buy 2-(2-Pyridylethyl)trimethoxysilane, they often seek a reliable supplier that guarantees purity and consistent quality, which NINGBO INNO PHARMCHEM CO.,LTD. aims to provide.
As a key player in the chemical industry, NINGBO INNO PHARMCHEM CO.,LTD. is committed to delivering high-performance materials. We offer this and other specialized organosilane for coatings and adhesives, enabling our clients to achieve superior product performance. The competitive price and accessibility for purchase make our offerings attractive for both research and large-scale industrial applications. Exploring the potential of this pyridine derivative can lead to significant advancements in material design.
Perspectives & Insights
Agile Reader One
“The pyridine ring is a heterocyclic aromatic compound containing a nitrogen atom, which can act as a Lewis base, coordinate with metal ions, or participate in various organic reactions.”
Logic Vision Labs
“This means that 2-(2-Pyridylethyl)trimethoxysilane can not only enhance adhesion but also potentially act as a ligand in catalysis, a component in functional polymers, or a precursor for more complex organic synthesis.”
Molecule Origin 88
“For those interested in acquiring this compound, understanding the properties of 2-(2-Pyridylethyl)trimethoxysilane is essential for its effective utilization.”