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3-Aminopropyl(diethoxy)methylsilane

ALDRICH/371890 - 97%

Synonym: 3-(Diethoxymethylsilyl)propylamine; 3-Aminopropyl-methyl-diethoxysilane

CAS Number: 3179-76-8
Empirical Formula (Hill Notation): C8H21NO2Si
Molecular Weight: 191.34
EC Number: 221-660-8
MDL Number: MFCD00039785
Linear Formula: CH3Si(OC2H5)2(CH2)3NH2
Product Type: Chemical

Catalog Number PKG Qty. Price Quantity
45-371890-50ML 50 mL
$57.70
1/EA
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45-371890-250ML 250 mL
$213.00
1/EA
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assay 97%
bp 85-88 °C/8 mmHg (lit.)
density 0.916 g/mL at 25 °C (lit.)
form liquid
InChI 1S/C8H21NO2Si/c1-4-10-12(3,11-5-2)8-6-7-9/h4-9H2,1-3H3
InChI key HXLAEGYMDGUSBD-UHFFFAOYSA-N
Quality Level 100 
refractive index n20/D 1.426 (lit.)
SMILES string CCO[Si](C)(CCCN)OCC
Application:
  • Amino Surface Modification and Fluorescent Labelling of Porous Hollow Organosilica Particles: Optimization and Characterization.: This study showcases the effectiveness of 3-Aminopropyl(diethoxy)methylsilane in modifying the surface properties of porous hollow organosilica particles, enhancing their application in biosensing and drug delivery systems. The modification process improves particle stability and functionality, demonstrating the compound′s utility in high-performance biomedical applications (Al-Khafaji et al., 2022 ).
  • Superelastic Multifunctional Aminosilane-Crosslinked Graphene Aerogels for High Thermal Insulation, Three-Component Separation, and Strain/Pressure-Sensing Arrays.: This research highlights the role of 3-Aminopropyl(diethoxy)methylsilane in producing graphene aerogels with exceptional properties such as elasticity, durability, and multi-functionality. These aerogels are promising for thermal insulation, filtration, and as sensors in automotive and aerospace industries, showcasing the compound′s broad potential in advanced material applications (Zu et al., 2019 ).
  • Improving the Gas-Separation Properties of PVAc-Zeolite 4A Mixed-Matrix Membranes through Nano-Sizing and Silanation of the Zeolite.: Utilizing 3-Aminopropyl(diethoxy)methylsilane for the surface modification of Zeolite 4A, this study enhances the gas-separation efficiency of PVAc-zeolite mixed-matrix membranes. The research addresses significant challenges in membrane-based separation technologies, particularly in the purification processes critical for environmental and industrial applications (Esmaeili et al., 2019 ).
Packaging: 50, 250 mL in glass bottle
Purity 97%
bp 85-88 °C/8 mmHg (lit.)
Density 0.916 g/mL at 25 °C (lit.)
Refractive Index n20/D 1.426 (lit.)
UNSPSC 12352103

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