The Copper Nanowires B1 (150nm×5µm) are dry-powder copper nanomaterials designed for conductive composite preparation, functional coatings, and advanced formulation development. With an average diameter of ~150 nm and a length of ~5 µm, their compact one-dimensional structure promotes conductive pathway formation throughout a host matrix. Their powder format enables them to be blended, compounded, or dispersed according to specific processing requirements, providing flexibility for incorporation into compatible polymers, ceramics, paints, adhesives, inks, and other formulations. The Cu Nanowires B1 are well suited for conductive composite, functional coating, ESD protection, EMI shielding, thermal management, and electrically active material applications.
Catalog Number: NovaWire-Cu-B1-IND
Diameter: ~150 nm
Length: ~ 5 µm
Appearance: reddish-brown dry powder
KEY FEATURES
The Cu Nanowires B1 combine a dry-powder format with high conductivity and flexible processing:
- Dry powder form: Suitable for direct incorporation into compatible composite, coating, ink, and adhesive systems.
- Conductive network formation: The elongated morphology supports interconnected pathways for charge and heat transport.
- High conductivity: Provides strong electrical and thermal transport for functional materials and devices.
- Controlled dimensions: The ~150 nm diameter and ~5 µm length provide an effective balance between nanoscale dimensions and network connectivity.
- Broad matrix compatibility: Suitable for polymers, ceramics, coatings, paints, adhesives, and other composite systems.
APPLICATIONS
The Copper Nanowires B1 offer versatile performance across a wide range of research and advanced materials applications, including:
- Conductive coatings and films
- Printed and flexible electronic formulations
- Conductive paints, inks, and adhesives
- Polymer and ceramic composites
- Battery, fuel-cell, and supercapacitor components
- ESD-protection materials
- EMI-shielding coatings and gaskets
- Thermally and electrically functional materials
SDS
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