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Bending reliability of screen-printed vias for a flexible energy module 被引量:2
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作者 Manu Kujala Terho Kololuoma +3 位作者 Jari Keskinen Donald Lupo Matti Mäntysalo thomas m.kraft 《npj Flexible Electronics》 SCIE 2020年第1期210-217,共8页
The future of printed electronics involves advancements not only related to full system integration,but also lean process manufacturing.A critical aspect of this progress is developed in this study,which evaluates a h... The future of printed electronics involves advancements not only related to full system integration,but also lean process manufacturing.A critical aspect of this progress is developed in this study,which evaluates a highly flexible screen printed through-hole-via using silver microparticle inks,for applications in energy harvesting and storage modules.The printed vias’fabrication and durability are evaluated by means of a double sided screen-printing method and repetitive(cyclic)bending tests.Vias,through 125-µm-thick PET foil,were laser cut(nominally 50,100,150,and 200µm diameters)then filled,and simultaneously connected to adjacent vias by screen printing.To investigate the use of the printed via in a monolithic energy module,the vias were used for the fabrication of a flexible printed supercapacitor containing aqueous electrolyte and carbon electrodes.The results indicate that the lower viscosity silver ink(DuPont 5064H)fills the via less effectively than the higher viscosity ink(Asahi LS411AW),and as the via size increases(≥150µm diameter)via walls are coated rather than filled.Conversely,the more viscous ink fills the via thoroughly and exhibited a 100%yield(1010 vias;100µm nominal via diameter)with the two-step direct screen-printing method.The 10-mm radius bending test showed no signs of via specific breakdown after 30,000 cycles.The results indicate that this via filling process is likely roll-to-roll compatible to enable multi-layered printed electronic devices. 展开更多
关键词 SILVER PRINTING NOMINAL
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