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Home  > 3-Aminopropyltriethoxysilane

AB48614

919-30-2 | 3-Aminopropyltriethoxysilane

Packsize Purity Availability Price Discounted Price    Quantity
5g 96% in stock $26.00 $18.00 -   +
25g >98.0%(GC)(T) in stock $30.00 $21.00 -   +
100g >98.0%(GC)(T) in stock $73.00 $51.00 -   +
500g >98.0%(GC)(T) in stock $177.00 $124.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB48614
Chemical Name: 3-Aminopropyltriethoxysilane
CAS Number: 919-30-2
Molecular Formula: C9H23NO3Si
Molecular Weight: 221.3693
MDL Number: MFCD00008207
SMILES: NCCC[Si](OCC)(OCC)OCC
NSC Number: 95428

 

Computed Properties
Complexity: 118  
Covalently-Bonded Unit Count: 1  
Heavy Atom Count: 14  
Hydrogen Bond Acceptor Count: 4  
Hydrogen Bond Donor Count: 1  
Rotatable Bond Count: 9  

 

 

Upstream Synthesis Route
  • 3-Aminopropyltriethoxysilane, also known as APTES, is a versatile compound widely used in chemical synthesis due to its unique reactivity and properties. In chemical synthesis, APTES serves as a crucial coupling agent and surface modifier. Firstly, APTES is commonly utilized as a silane coupling agent in the modification of various surfaces. Its ability to form stable covalent bonds with both inorganic surfaces, such as glass, silica, and metals, and organic surfaces enables the functionalization of diverse materials. This enables improved adhesion, dispersion, and compatibility between dissimilar materials, making APTES a valuable tool in surface treatment and modification processes.Furthermore, APTES plays a significant role in functionalizing nanoparticles and nanomaterials. By grafting APTES onto the surface of nanoparticles, researchers can introduce specific functional groups or tailor the surface properties to achieve desired characteristics, such as increased stability, dispersibility, or enhanced reactivity.Lastly, APTES is a key intermediate in the synthesis of various organic compounds, including amino-functionalized silanes, polymers, and dendrimers. Its primary amine group provides a versatile platform for further derivatization, enabling the incorporation of APTES into complex molecular structures for a range of applications in materials science, catalysis, and biomaterials.Overall, the multifaceted applications of 3-Aminopropyltriethoxysilane in chemical synthesis make it a valuable and indispensable reagent for researchers and industry professionals seeking to modify surfaces, functionalize nanoparticles, or synthesize novel organic compounds with tailored properties.
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