In this work, the novel method of intense pulsed light (IPL) sintering of a nanoparticle silver ink is presented. Various patterns are printed with the Inkjet technology on two flexible foils with different light spectra. One is a clear Polyethylenterephthalat [PET] foil and the second is a light brownish Polyimide [PI] foil. The samples are flashed with different parameters regarding to pulse intensity and pulse length. Microscopic images are indicating the impact of the flashing parameters and the different light spectra of the substrates on the sintered structures. Sheet and line resistance are measured and the conductivity is calculated. A high influence of the property of the substrate with respect to light absorption and thermal condu...
In this work, the flash light sintering process of the Ag nano-ink was investigated. Ag nano-ink pat...
The inkjet printing of nanoparticle inks to produce metal coatings is low in manufacturing cost and ...
Development of cost-effective and environmentally friendly manufacturing methods will enable importa...
Inkjet printing of various nanoparticle inks, made from silver or copper nanoparticles, and its tran...
The development of novel manufacturing methods for flexible, light weight and cost-efficient electro...
Novel manufacturing methods for flexible, light weight and cost-efficient electronics have gained hi...
In this work, the microstructures of inkjet-printed nanosilver films sintered by intense pulsed ligh...
Printing silver nanoparticle inks to generate conductive structures for electronics on polymer subst...
Silver nanoparticle inks printed on temperature-sensitive substrates can be converted into structure...
V tomto článku je zkoumána možnost využití intenzivního pulzního světla pro spékání stříbrného inkou...
As a nascent technology that developed during the last decades from only printing text and graphics ...
The electronic properties of a printed layer are influenced by a number of factors, including the na...
Silver nanoparticle inks are increasingly applied for the manufacture of inkjet-printed electrically...
During the last years, intense pulsed light (IPL) processing has been employed and studied intensive...
In recent printed electronics technology, a photo-sintering technique using intense pulsed light (IP...
In this work, the flash light sintering process of the Ag nano-ink was investigated. Ag nano-ink pat...
The inkjet printing of nanoparticle inks to produce metal coatings is low in manufacturing cost and ...
Development of cost-effective and environmentally friendly manufacturing methods will enable importa...
Inkjet printing of various nanoparticle inks, made from silver or copper nanoparticles, and its tran...
The development of novel manufacturing methods for flexible, light weight and cost-efficient electro...
Novel manufacturing methods for flexible, light weight and cost-efficient electronics have gained hi...
In this work, the microstructures of inkjet-printed nanosilver films sintered by intense pulsed ligh...
Printing silver nanoparticle inks to generate conductive structures for electronics on polymer subst...
Silver nanoparticle inks printed on temperature-sensitive substrates can be converted into structure...
V tomto článku je zkoumána možnost využití intenzivního pulzního světla pro spékání stříbrného inkou...
As a nascent technology that developed during the last decades from only printing text and graphics ...
The electronic properties of a printed layer are influenced by a number of factors, including the na...
Silver nanoparticle inks are increasingly applied for the manufacture of inkjet-printed electrically...
During the last years, intense pulsed light (IPL) processing has been employed and studied intensive...
In recent printed electronics technology, a photo-sintering technique using intense pulsed light (IP...
In this work, the flash light sintering process of the Ag nano-ink was investigated. Ag nano-ink pat...
The inkjet printing of nanoparticle inks to produce metal coatings is low in manufacturing cost and ...
Development of cost-effective and environmentally friendly manufacturing methods will enable importa...