Copper nanowires provide optimized electrical conductivity, superior mechanical flexibility, and enhanced thermal stability. Designed for transparent conductive films, flexible electronics, and energy applications, they ensure efficient charge transport, extended durability, and high adaptability.
Product Overview
Copper nanowires are one-dimensional nanostructured materials made from copper. Due to their excellent electrical conductivity, mechanical properties, and good flexibility, copper nanowires are widely used in flexible electronics, conductive adhesives, solar cells, and sensors. Although the conductivity of copper nanowires may change due to nanoscopic and surface effects, with proper preparation and treatment, their conductivity remains high, making them ideal for high-performance electronic and electrical applications.
Key Features
- Excellent Conductivity:Similar to silver, copper nanowires offer outstanding electrical conductivity, making them ideal for use in electronic devices.
- Outstanding Transparency:Due to the nanometer size effect, copper nanowires have excellent light transmission properties.
- Excellent Flexibility:Copper nanowires maintain good performance even when bent or folded, making them suitable for flexible electronic devices.
- High Aspect Ratio:With a high aspect ratio, copper nanowires are ideal for applications in conductive and thermally conductive adhesives.
- Reactivity:Compared to bulk copper, copper nanowires are more reactive and more likely to interact with oxygen, showing some chemical reactivity.
Applications
- Optoelectronic Devices:Used to create high-performance optoelectronic devices, improving functionality and efficiency.
- Thin-Film Solar Cells:Widely used in the research and production of thin-film solar cells to enhance cell performance.
- Conductive and Thermally Conductive Adhesives:Copper nanowires' high aspect ratio is leveraged in conductive and thermally conductive adhesives.
- Flexible Electronics:Suitable for flexible nano-generators and other wearable or flexible electronic devices.
- Integrated Circuits:Used as a conductive material in microelectronic components for next-generation electronic technologies.
- Sensors:Ideal for chemical and biological sensors, offering excellent sensing performance.
Parameter | Value | Value |
Diameter | 40-230 nm | 100-200 nm |
Length | 10-30 μm | 0.8-6 μm |
Solvent | Ethanol/Water | Water |
Purity | ~99% | ~99% |
Concentration | 10 mg/ml | 10 mg/ml |