
Product Name
Name:Tin dioxide nanoparticles
Product Overview
In the field of optoelectronics, zinc oxide nanorods are widely used in optoelectronic materials such as field emission devices and light-emitting diodes (LEDs), and are favored due to their excellent optoelectronic properties. Gas sensing sensor: Zinc oxide nanorods, due to their excellent gas sensing performance, can be used for combustible gas sensors, such as selective separation of alcohol vapor signals. Solar cells: Due to their efficient photocatalytic performance, zinc oxide nanorods are used as photocatalysts in solar cells, significantly improving cell efficiency. Medical applications: Zinc oxide nanorods can be used as drug carriers to load anti-tumor drugs and effectively inhibit cancer cell growth.
Technical Parameter
Diameter(nm):20-50 nm
Main ingredient:SnO2
Product Features
Optical performance: Tin dioxide nanoparticles have good visible light transmittance and are suitable for fields such as photovoltaic cells and photocatalysis. Electrical properties: As an intrinsic semiconductor oxide, tin dioxide nanoparticles have excellent conductivity and electrical stability. Chemical stability: Tin dioxide nanoparticles have excellent chemical stability in aqueous solutions and can resist corrosion from various chemical substances. Diverse forms: Tin dioxide nanoparticles can exhibit various forms such as nearly spherical, rod-shaped, ellipsoidal, etc., which contribute to their performance in different applications.
Application Fields
Energy Conversion: Used in perovskite solar cells and lithium-ion batteries, it can effectively improve energy conversion efficiency. Photocatalysis: Tin dioxide nanoparticles are widely used in fields such as photocatalytic degradation of organic pollutants and water splitting, such as benzene and methyl orange. Solar cells: As electronic transport materials for perovskite solar cells, tin dioxide nanoparticles can improve the energy conversion efficiency of solar cells. Gas sensing sensor: Tin dioxide nanoparticles perform well in the field of gas sensing and can be used for exhaled breath analysis, food freshness detection, and air pollution monitoring. Lithium ion battery: As the negative electrode material of lithium-ion batteries, tin dioxide nanoparticles have the characteristics of high capacity and long lifespan. Liquid crystal displays and anti-static plastics: Tin dioxide nanoparticles are used in liquid crystal displays and anti-static plastics for radiation protection coatings and improved conductivity.
Related Information
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