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Boron doping reduced graphene oxide powder

$142.86
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Product Name

Name:Boron doping reduced graphene oxide powder

Product Overview

Boron doped reduced graphene oxide powder is a specially treated graphene material that introduces boron element into graphene and removes most of the oxygen-containing functional groups in graphene oxide through a reduction process, thereby obtaining unique physical and chemical properties.


Technical Parameter

Diameter:0.5-10 μm   TEM

nm:¡ãC   nm

B content:~2.22%     XPS

Appearance:Black   powder

Note:XPS is single measurement data, and different batches are allowed to fluctuate.

 

Product Features

 

Excellent conductivity: Boron doping can significantly improve the conductivity of graphene, making it have lower resistivity and higher carrier mobility.

Enhanced electrochemical performance: Boron doping can increase the electrochemical active sites of graphene, improve its electrochemical stability and reactivity, and thus have broad application prospects in lithium-ion batteries, supercapacitors, and other fields.

Expanded specific surface area and porosity: During boron doping, more defects and pores may be generated, thereby expanding the specific surface area and porosity of graphene, which is beneficial for applications such as adsorption and catalysis.

Good biocompatibility: Boron doped reduced graphene oxide powder also has certain potential applications in the biomedical field, such as as as drug carriers, biosensors, etc.


Application Fields

 

Energy storage: used as electrode materials in lithium-ion batteries and supercapacitors to increase energy density and power density.

Catalytic field: As a catalyst carrier or catalyst itself, it improves catalytic efficiency and selectivity in chemical reactions.

Biomedical: Used in biomedical fields such as biosensors and drug delivery systems.

Environmental Protection: Used as an adsorbent or catalyst in environmental protection fields such as sewage treatment and air purification.


Related Information

Please e-mail for the detailed characterization data.

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