Graphene, >99%, Average 6 Layers
Carbon Nanotubes & GrapheneGraphene, >99%, Average 6 Layers
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Out of stock
Graphene, >99%, Average 6 Layers delivers reliable graphene quality for electronics and composite prototyping.
Each lot is supplied with tight characterization for labs scaling from bench to pilot.
Medicine: Tissue engineering, Contrast agents, bioimaging, Polymerase chain reaction, Devices, Drug delivery, Biomicrorobotics, Testing, Toxicity.
\nElectronics: Transistors, Transparent conducting electrodes, Frequency multiplier, Optoelectronics, Hall effect sensors, Quantum dots, Organic electronics, Spintronics, Conductive ink.
\nLight processing: Optical modulator, Ultraviolet lens, Infrared light detection, Photodetector.
\nEnergy: Generation, Storage.
\nSensors: Biosensors, Pressure sensors, NEMS, Molecular adsorbtion, Piezoelectric effect, Body motion, Magnetic
\nEnvironmental: Contaminant removal, Water filtration, Permeation barrier, heavy metals sensing.
\nOther: Plasmonics and metamaterials, Lubricant, Radio wave absorption, Redox, Nanoantennas, Sound transducers, Waterproof coating, Coolant additive, Reference material, Thermal management, Structural material, Catalyst, Aviation.
| Appearance | Black Powder |
|---|---|
| Cas number | 99685-96-8 |
| Extra specifications | Average 6 Layers |
| Functionalization | NIL |
| Purity | >99% |
| SKU | NGGRA356 |
Applied in high-performance flexible electronics including foldable smartphones and wearable sensors, transparent conductive films for next-generation touchscreens and OLED displays, supercapacitor electrodes with ultra-high capacitance (550 F/g) for rapid energy storage, lithium-ion battery anodes enabling 10x faster charging than graphite, electromagnetic interference (EMI) shielding composites for aerospace and 5G infrastructure, lightweight structural composites for automotive and aerospace with 200x strength-to-weight ratio of steel, water desalination membranes with high permeability and salt rejection, biosensors for real-time glucose and DNA detection with femtomolar sensitivity, thermal management materials for cooling high-power electronics, photocatalytic coatings for self-cleaning and anti-bacterial surfaces, and drug delivery carriers with controlled release kinetics. The 6-layer structure balances single-layer electrical properties with multi-layer mechanical stability and ease of processing.