
Product Name
Copper oxide nano-chains
Product Overview
Copper oxide nanoclusters are inorganic materials with a special nanostructure consisting of copper oxide nanoparticles that form a chain-like structure. This material has the potential for a wide range of applications in several fields due to its unique physical and chemical properties.
Technical Parameter
Diameter:5-42nm
Length:.0-1.6um
Crystallinity:6.9%
Purity:9%
Product Features
1. Special electrical properties: it is very sensitive to the external environment such as temperature, humidity, light and other conditions, and can be used to cover the sensor, thus greatly improving the response speed, sensitivity and selectivity of the sensor.
2. Good catalytic properties: good results in photocatalytic degradation of organic dyes.
3. Presenting the characteristics of surface effect, quantum size effect, volume effect and macroscopic quantum tunneling effect, etc.: Compared with ordinary copper oxide, the nanoscale gives copper oxide nano-chain special properties, for example, its infrared absorption peaks show obvious broadening and blueshift phenomenon, the use of this blueshift phenomenon can be designed to wavelength-controllable light-absorbing materials, microwave absorption, radar wave absorption, stealth fighter coatings, etc. There are good prospects for the application. It has good application prospects in microwave absorption, radar wave absorption, stealth fighter coating, etc.
Application Fields
Superconductivity and Magnetic Phase Transition: Copper oxide nanochips can play an important role in superconducting materials and magnetic phase transition technology.
Thermal components: Due to their good thermal properties, copper oxide nanochips are widely used in the manufacture of thermal components.
Photoelectrocatalysis: In the field of photoelectrocatalysis, copper oxide nanochips can be used in the rayon manufacturing industry and as desulfurising agents for oils and fats.
Sensor and lithium-ion battery electrode materials: Its excellent sensing properties and electrochemical properties make it an ideal choice for gas phase sensors and lithium-ion battery electrode materials.
Related Information
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