Benzenamine, N-[(trimethoxysilyl)methyl]-


Chemical Name: Benzenamine, N-[(trimethoxysilyl)methyl]-
CAS Number: 77855-73-3
Product Number: AG00ICW8(AGN-PC-00002S)
Synonyms:
MDL No:
Molecular Formula: C10H17NO3Si
Molecular Weight: 227.3324

Identification/Properties


Safety Information


GHS Pictogram:
N/A
Signal Word:
UN#:
-
Hazard Statements:
-
Precautionary Statements:
Class:
-
Packing Group:
-

NMR Spectrum


Other Analytical Data


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Chemical Structure



N-((Trimethoxysilyl)methyl)aniline, also known as TMSMA, is a versatile chemical compound that is commonly used in chemical synthesis processes. Its unique structure, which combines an aniline group with a trimethoxysilyl group, provides a range of useful applications in various chemical reactions.In chemical synthesis, N-((Trimethoxysilyl)methyl)aniline serves as a valuable reagent for functionalizing silica surfaces. The trimethoxysilyl group allows for the compound to effectively bind to silica substrates, opening up opportunities for surface modification and immobilization of desired functional groups. This property makes TMSMA particularly useful in the preparation of functionalized silica materials, which find applications in catalysis, adsorption, and separation processes.Additionally, the aniline moiety in N-((Trimethoxysilyl)methyl)aniline offers reactivity that enables the compound to participate in a variety of organic reactions. It can be used as a precursor for the synthesis of diverse organic compounds, including dyes, polymers, and pharmaceutical intermediates. The presence of the trimethoxysilyl group also provides the added benefit of enhancing the compatibility of TMSMA with silica-based materials, making it a valuable tool in the design and synthesis of advanced functional materials.Overall, N-((Trimethoxysilyl)methyl)aniline plays a crucial role in chemical synthesis by facilitating the modification of silica surfaces and enabling the synthesis of a wide range of organic compounds with tailored properties. Its unique combination of functional groups makes it a versatile and indispensable reagent for researchers and chemists working in various fields of chemistry.