Single Layer Graphene Oxide Dispersion

Average radial size: 5-8μm, thickness: 1nm, 2mg/mL, dispersion in EG

Reagent Code: #94925
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CAS Number 7782-42-5

science Other reagents with same CAS 7782-42-5

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 12.01 g/mol
Formula C
badge Registry Numbers
EC Number 231-955-3
MDL Number MFCD00144065
inventory_2 Storage & Handling
Storage room temperature

description Product Description

Single Layer Graphene Oxide Dispersion is widely used in the development of advanced materials due to its unique properties. It is commonly applied in the creation of conductive inks and coatings, enhancing the electrical conductivity and mechanical strength of various substrates. In the field of energy storage, it serves as a key component in the fabrication of supercapacitors and lithium-ion batteries, improving their efficiency and capacity. Additionally, it is utilized in water purification systems, where its high surface area and functional groups enable effective adsorption of contaminants. In biomedical applications, it is employed for drug delivery systems and biosensors, leveraging its biocompatibility and large surface area for targeted and efficient delivery. Its versatility also extends to the production of composite materials, where it reinforces polymers and other matrices, resulting in lightweight yet strong materials for aerospace and automotive industries.

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Test Parameter Specification
Appearance liquid
Concentration 2 mg/ml
Thickness 1 nm
Infrared Spectrum Conforms to Structure
NMR Conforms to Structure

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 25ml
10-20 days ฿5,680.00
inventory 100ml
10-20 days ฿14,800.00
inventory 500ml
10-20 days ฿50,800.00

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Single Layer Graphene Oxide Dispersion
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Single Layer Graphene Oxide Dispersion is widely used in the development of advanced materials due to its unique properties. It is commonly applied in the creation of conductive inks and coatings, enhancing the electrical conductivity and mechanical strength of various substrates. In the field of energy storage, it serves as a key component in the fabrication of supercapacitors and lithium-ion batteries, improving their efficiency and capacity. Additionally, it is utilized in water purification systems, where its high surface area and functional groups enable effective adsorption of contaminants. In biomedical applications, it is employed for drug delivery systems and biosensors, leveraging its biocompatibility and large surface area for targeted and efficient delivery. Its versatility also extends to the production of composite materials, where it reinforces polymers and other matrices, resulting in lightweight yet strong materials for aerospace and automotive industries.
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