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New conductive material nickel nanowires NiNWs Hongwu Nickel nanowires have a wide range of potential applications in electronic materials, catalysis, polymers, magnetic storage ultra-high density recording materials, sensors and self-lubricating materials. more
Transparent Colloidal Ag Antibacterial Nano Silver Colloid Ag (Antibacterial Nano Silver Colloid) has been well known antibacterial, antiviral and antifungal properties are enhanced by small particle size and large surface area. more
Nano silica particles used in epoxy resin, superhydrophobic coating nano silica powder Nano silica particles, 20-30nm, 99.8% purity, widely used in exposy resin and superhydrophobic coating. more
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Thermochromism refers to the phenomenon where a material undergoes color changes under temperature changes. This change is usually caused by changes in the electronic or molecular structure of the material. Its application principle mainly involves t...
Our silver nanowires now could supply with diameter<30nm, length>20um,widely used as flexible display.
product origin:
Chinaitem no.:
G586-AgNWs.shipping port:
Guangzhou,Shenzhencolor:
silver grey powderpayment:
T/T. PayPal<30nm Diameter >20um Length Silver Nanowires AgNWs for Flexible Display
Silver nanowires are constructed using silver nanowire (AgNW) technology, which offers an unmatched combination of performance, cost and durability.
Silver (Ag) – the most conductive material on the planet – can be synthesized into incredibly thin nanowires (NW). AgNW allows for minimal light interference, low haze and exceptional transmission, plus it’s extremely flexible and can be easily dispersed into inks for roll-to-roll coating on flexible substrates.
Silver nanowires hold promise for applications such as flexible displays and solar cells, but their susceptibility to damage from highly energetic UV radiation and harsh environmental conditions has limited their commercialization.
Devices made from silver nanowires and graphene could find uses in solar cells, flexible displays for computers and consumer electronics, and future "optoelectronic" circuits for sensors and information processing. The material is flexible and transparent, yet electrically conductive, and is a potential replacement for indium tin oxide, or ITO.
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