Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5364581 | Applied Surface Science | 2012 | 7 Pages |
Direct synthesis of silver conductive film on PET substrate by inkjet printing silver citrate conductive ink was presented in this paper. This kind of conductive ink contained silver citrate as silver precursor, 1,2-diaminopropane as complex agent dissolving the silver salt and methanol and isopropanol as a media adjusting the viscosity and surface tension. The formation of silver-amine complex reduced the decomposition temperature from 180 °C to 135 °C, thus the ink could be cured at relatively low temperature. The film reached the lowest resistivity of 17 μΩ cm after cured at 150 °C for 50 min, 3.1 μΩ cm at 230 °C and possessed high reflection and excellent adhesive property. Electrical conductivity, surface morphology and composition were investigated by four-point probe method, scanning electron microscope (SEM) and energy dispersive X-ray spectroscopy (EDS). It is demonstrated how the cured condition affects the silver film. Moreover, radio-frequency identification (RFID) antenna was fabricated by inkjet printing, which opens up routes for the flexible electronics fabrication.
⺠A direct synthesis method of silver conductive film on PET substrate was presented. ⺠A stable particle-free conductive ink was prepared. ⺠Formation of silver-amine complex reduced the thermal decomposition temperature. ⺠Conductive patterns for flexible electronics were fabricated by inkjet printing. ⺠Silver film on PET substrate possessed highest adhesion rating even without polymer.