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Tetraethylene Pentamine Functionalized Reduced Graphene Oxide (rGO-TEPA)

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SKU:
NG10GNPW0957
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  • Tetraethylene Pentamine Functionalized Reduced Graphene Oxide (rGO-TEPA) (NG10GNPW0957)
  • Tetraethylene Pentamine Functionalized Reduced Graphene Oxide (rGO-TEPA)
  • Tetraethylene Pentamine Functionalized Reduced Graphene Oxide (rGO-TEPA)
$635.52
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Description

1 gram/545                         
5 grams/2460   
25 grams/8950    

Please contact us for quotes on larger quantities !!! 

Tetraethylene Pentamine Functionalized Reduced Graphene Oxide (rGO-TEPA)

Technical Properties:

Form Powder        
Color Black        
Linear Formula CxOyHz        
Elemental Analysis ( Atomic %) C N O Na C (Residual)
  71.6 13.8 11.2 3.0 0.4

Raman Analysis

ekran-g-r-nt-s-2025-10-15-144712.png

FTIR Analysis

ekran-g-r-nt-s-2025-10-15-144825.png

Applications: 

  • Composite Reinforcement: Amino functional groups and high surface reactivity promote strong interfacial bonding with polymer, elastomer, and metal matrices; improves mechanical strength and electrical/thermal conductivity.
  • Surface Modification and Adhesion Promotion: TEPA amines enable covalent or strong ionic interactions with substrates, enhancing adhesion in coatings, adhesives, and resin systems.
  • Dispersion Stabilization: Amine functionality improves compatibility and stability in aqueous and many organic solvents and polymer solutions; yields homogeneous distribution in films and inks.
  • Sensors and Bio‑immobilization: Surface amines provide active sites for conjugation of biomolecules or chemical receptors; useful for gas, chemical, and biosensor functionalization.
  • Electrode and Energy‑Storage Modification: Incorporation of amine‑functional rGO into electrodes can enhance electrochemical stability, capacitance, and charge transport.
  • Coatings and Corrosion Protection: Functional rGO layers improve barrier properties and substrate binding, contributing to corrosion resistance on metal surfaces.
  • Catalysis and Catalyst Supports: Surface amine ligands facilitate immobilization and stabilization of metal nanoparticles; suitable for heterogeneous catalysis applications.
  • Thermal Management in Composites: Improves interfacial heat transfer and overall thermal conductivity for TIMs, heat spreaders, and thermal management solutions.
  • Membranes and Separation (Functional Modification): Amine functionality enables selective interactions and tuning of hydrophilicity/hydrophobicity, enhancing filtration and separation performance.

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