Nickel oxide (NiO) nanowires provide optimized electrochemical properties, superior catalytic activity, and enhanced charge storage capacity. Designed for battery electrodes, sensors, and catalytic applications, they ensure efficient ion transport, extended durability, and high adaptability.
Product Overview
Nickel oxide nanowires are an important inorganic functional material known for their excellent thermal sensitivity. Due to their small size, high surface area, and high chemical activity, these nanowires are widely used in industries such as metallurgy, electronics, and chemistry. Nickel oxide nanowires have significant potential in various applications, including catalysis, electrode materials, magnetic materials, and electronic components.
Key Features
- High Surface Area:The nanowire structure provides a large surface area, significantly increasing the number of active sites, thereby enhancing the chemical reaction activity.
- Good Electrical Performance:Exhibits conductivity and semiconductor properties, suitable for electronic and electrical applications.
- Thermal Stability:Maintains structural and performance stability at high temperatures, making it suitable for harsh working environments.
Applications
- Battery Industry:As an anode material for lithium-ion batteries, nickel oxide nanowires improve the capacity and cycling performance of batteries. They enhance battery lifespan and charge/discharge stability, making them ideal for applications like mobile phone batteries. They can also be used as electrode materials in supercapacitors to optimize charge storage capacity and enable rapid charging and discharging.
- Sensor Industry:Used as gas sensors, nickel oxide nanowires show high sensitivity to gases such as hydrogen and carbon monoxide, widely used in detecting hazardous gas leaks in industrial environments. Additionally, they can serve as biosensors for detecting biological molecules such as glucose and proteins.
- Catalysis Industry:Nickel oxide nanowires exhibit excellent catalytic activity in hydrogenation reactions and help improve hydrogen production efficiency through water splitting, contributing to the generation of green energy.
Technical Parameter | Value |
Appearance | Black Powder |
Length | ~20 μm |
Diameter | ~20 nm |
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