Nano-circuit Devices Used High Active Cu nanowires

Cu nanowires has excellent electrical properties, can be used to produce nano-circuit devices.



                                            Nano-circuit Devices Used High Active Cu nanowires

 

Spec: diameter: 50-100nm, Length: >5um, Purity: >99%

 

Application for copper nanowires:

1. Copper nanowires used to make the film, can greatly reduce the potential of mobile phones, e-readers and other display manufacturing costs, and can help scientists build foldable electronics and enhance performance of solar cells.

2. Nanometer copper has excellent electrical properties, can be used to produce nano-circuit devices.

3. The researchers said they have developed beyond the copper nanowires in addition to carbon nanotubes in performance, the price is also lower than the silver nanowire technology, the use of circuit array of copper nanowires produced, may be included in the printing process in order to room temperature printed on the flexible transparent plastic substrate layer, as the display pixels, or a solar battery cell processor.

4. Cu due to has low resistance, resistance to electromigration resistance, low price and so has become the most commonly used conventional electronic circuit wires, so research and development applied to microelectronics and semiconductor element metallic Cu nanowires have great prospects .

5. Copper nanowires most novel catalyst has high reactivity, selectivity, etc., but because of the nanowires with high surface energy and eventually led to its easy to reunite lost catalytic activity, so are generally select the appropriate ligand for Cu nanowires modified to improve its dispersibility and avoid agglomeration resulting in inactivation of the catalytic activity.

6. Copper nanowire arrays have low electric field and high stability open, in the cold field emission source also has good prospects.

7. Because the copper nanowires large proportion of surface atoms, with strong surface activity, so the need for Cu nanowires with different surface modification treatment, resolve and poor dispersion stability and other issues, is expected to be good photocatalytic applications.


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