Ag@C Carbon-Coated Silver Core-Shell Nanoparticles
Ag@C Carbon-Coated Silver Core-Shell Nanoparticles
Ag@C Carbon-Coated Silver Core-Shell Nanoparticles
Ag@C Carbon-Coated Silver Core-Shell Nanoparticles

Ag@C Carbon-Coated Silver Core-Shell Nanoparticles

  • element:Silver (Ag), Carbon (C)
  • purity:High Purity
  • shape:Brownish-Red Powder
  • specification:Particle size 200-300 nm, silver core diameter 80±15 nm, carbon layer thickness 80±10 nm
  • packaging:Customizable

Ag@C carbon-coated silver core-shell nanoparticles provide optimized conductivity, superior oxidation resistance, and enhanced stability. Designed for advanced applications, they ensure efficient material integration, extended durability, and high-performance adaptability.

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Product Overview

Ag@C carbon-coated silver core-shell nanoparticles are an innovative nanocomposite material, where silver (Ag) nanoparticles serve as the core, and a uniform layer of carbon (C) wraps around them. This unique core-shell structure not only combines the excellent properties of both silver and carbon but also imparts new characteristics to the nanoparticles. These particles show significant potential in various applications, particularly in electronics, catalysis, antibacterial materials, and biomedical fields.

Key Features

  • Core-Shell Structure: The silver nanoparticles are uniformly encapsulated by a carbon shell, forming a classic core-shell structure that enhances both the stability and functionality of the silver core.
  • Size Control: By adjusting the parameters during the preparation process, the size and morphology of the nanoparticles can be precisely controlled to meet the needs of different applications.
  • High Stability: The carbon shell effectively protects the silver nanoparticles from oxidation and corrosion, improving their long-term stability and durability.

Applications

  • Electronics: Due to their excellent conductivity, Ag@C core-shell nanoparticles can be used in the production of conductive films, electrode materials, and other electronic devices.
  • Catalysis: Silver is an efficient catalyst, and the carbon shell can further adjust its catalytic activity and selectivity, enhancing its catalytic performance in chemical reactions.
  • Antibacterial Materials: Thanks to the broad-spectrum antibacterial properties of silver ions, Ag@C nanoparticles are suitable for manufacturing antibacterial coatings, fibers, and other materials.
  • Biomedical: With carbon's excellent biocompatibility, Ag@C nanoparticles hold potential for applications in drug delivery, cell imaging, and other biomedical fields.
ItemParameter
StateBrown-red powder
Particle Size200-300 nm
Silver Core Size80±15 nm
Carbon Layer Thickness80±10 nm

 

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