Silver nanowires provide optimized conductivity, superior flexibility, and enhanced transparency, making them ideal for spin coating and spray coating applications. They ensure efficient electrical performance, extended durability, and high adaptability for advanced electronic and optical devices.
Product Overview
Silver nanowire films are composed of randomly overlapping silver nanowires, forming a network structure that offers excellent conductivity and transparency. This structure allows for efficient charge transfer along the silver nanowire network, while light passes through the gaps between the nanowires, making it an ideal transparent conductive material. This silver nanowire product is specifically designed for spin coating and spray coating techniques, with widespread applications in transparent electrodes, sensors, and other fields. It is a flexible and ideal alternative to traditional ITO (indium tin oxide) transparent electrodes.
Key Features
- High Transparency:Exhibits excellent light transmission in the visible range, suitable for applications requiring transparency.
- Excellent Conductivity:As a metal material, silver nanowires demonstrate superior electrical conductivity, ideal for high-performance electronic devices.
- Good Flexibility:Suitable for flexible electronics, capable of withstanding bending and folding requirements.
- High Surface Area:Enhances its performance in electronics, optoelectronics, and biomedical applications.
- Good Dispersibility:Minimal aggregation, allowing for even dispersion in solution, making it suitable for spin coating and spray coating applications.
- Strong Adhesion:Can bond with various substrate materials to form stable electrode structures.
- Simple Preparation Method:Spin coating and spray coating techniques are straightforward, suitable for large-scale production.
Applications
- Flexible Display Devices:Can be used to manufacture displays for dynamic applications like bending and folding, such as flexible screens for smartphones and tablets.
- Touch Screens:Widely used in smartphones, tablets, and other devices, providing sensitive touch response and clear display performance.
- Smart Wearable Devices:Applied in displays and sensors for smartwatches, fitness bands, and other wearable devices, adapting to the bending and stretching requirements of the devices.
- Solar Cells:As a transparent conductive electrode, it helps improve the light capture efficiency and electrical output of solar cells.
- Electronic Paper:Provides clear displays and excellent conductivity, suitable for low-energy consumption display applications.
- Transparent Heating Elements:Used in de-icing and anti-fogging systems for car windshields, aircraft windows, and smart heating windows in buildings.
- Biosensors:Plays an important role in biological molecule detection and physiological monitoring, enabling real-time and sensitive detection.
- Transparent Electromagnetic Shielding Materials:Used for effective electromagnetic radiation shielding without affecting transparency and appearance.
Diameter | 120 nm | 90 nm | 60 nm | 50 nm | 40 nm |
Length | 20-50 μm | 40-60 μm | 20-50 μm | 20-50 μm | 20-50 μm |
Concentration | 20 mg/ml | 20 mg/ml | 20 mg/ml | 20 mg/ml | 20 mg/ml |
Purity | >98 wt% | >98 wt% | >98 wt% | >99.5% | >99.5% |
Solvent | Water/Isopropanol | Water | Water/Isopropanol | Water/Isopropanol | Water/Ethanol |