
Product Name
Name:APTMS-rGO powder
Product Overview
Aminofunctionalized graphene (APTMS modification) refers to the material in which graphene is intercalated or surface modified with amino functional groups through APTMS, where APTMS represents 3-aminopropyltrimethoxysiloxane. This modification endows graphene with new properties and functions. The amino and siloxane groups in APTMS molecules can react with oxygen groups (such as hydroxyl and carboxyl groups) on the surface of graphene to form covalent bonds, thereby introducing amino functional groups into the graphene surface. This modification not only changes the surface properties of graphene, but also enhances its ability to interact with other molecules.
Technical Parameter
Diameter:0.5-10 μm TEM
nm:¡ãC nm
Grafting amount of APTMS:~4.63% XPS-Peak-Differentation-Imitating Analysis
Appearance:Black powder
Zeta potential:~ -9.69 mV
Note:Zeta potential and XPS is single measurement data, and different batches are allowed to fluctuate.
Product Features
Good dispersibility: APTMS modified graphene has significantly improved dispersibility in aqueous solutions or organic solvents, which is beneficial for its applications in composite materials, coatings, inks, and other fields.
Enhanced chemical reactivity: The introduction of amino functional groups enables amino functionalized graphene (APTMS modified) to undergo stronger chemical reactions with other molecules or materials, providing more possibilities for its functional modification.
Excellent biocompatibility: Due to the presence of amino functional groups, amino functionalized graphene (APTMS modified) has potential application value in the biomedical field, such as drug carriers, biosensors, etc.
Application Fields
Composite materials: As nano fillers added to polymers, ceramics, and other composite materials to improve their mechanical, thermal, and electrical properties.
Coatings and inks: used to prepare high-performance coatings and ink products, enhancing their wear resistance, corrosion resistance, and conductivity.
Biomedical: has potential applications in drug delivery systems, bioimaging, and biosensing.
Other fields: such as catalyst carriers, environmental remediation materials, etc.
Related Information
Please e-mail for the detailed characterization data.
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