Printed electronics on flexible substrates has attracted tremendous research interest research thanks its low cost, large area production capability and environmentally friendly advantages. Optimal characteristics of silver nanoparticles (Ag NPs) based inks are crucial for ink rheology, printing, post-print treatment, and performance of the printed electronics devices. In this review, the methods and mechanisms for obtaining Ag NPs based inks that are highly conductive under moderate sintering conditions are summarized. These characteristics are particularly important when printed on temperature sensitive substrates that cannot withstand sintering of high temperature. Strategies to tailor the protective agents capping on the surface of Ag N...
Inkjet printing of various nanoparticle inks, made from silver or copper nanoparticles, and its tran...
Printed electronics will bring to the consumer level great breakthroughs and unique products in the ...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
Printed electronics refers to the technologies of fabricating electronic and optoelectronic devices ...
The presented thesis addresses the composition, inkjet-printing and low-temperature sintering of the...
As an alternative technology to replace lithographic process, direct printing of conductive nanoflui...
Electrical conductivity is a key factor in measuring performance of printed electronics, but the con...
The development of highly conductive Ag nanoparticle (NP)-based inkjet printed (IP) connections is a...
Ag nanoparticles were successfully prepared using a liquid reduction method with a suitable mixture ...
Printed electronics (PE) technology shows huge promise for the realisation of low-cost and flexible ...
Near infrared(NIR) sintering technology is a photonic sintering approach for metal nanoparticle inks...
Owing to its unique properties, silver (Ag) in the form of nanoparticle (NP) ink promises to play a ...
Thesis (Master's)--University of Washington, 2016-06Printed electronics is an emerging area of study...
Printed electronics refers to the technologies of fabricating electronic and optoelectronic devices ...
Krishna Rajan, Ignazio Roppolo, Annalisa Chiappone, Sergio Bocchini, Denis Perrone, Alessandro Chiol...
Inkjet printing of various nanoparticle inks, made from silver or copper nanoparticles, and its tran...
Printed electronics will bring to the consumer level great breakthroughs and unique products in the ...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
Printed electronics refers to the technologies of fabricating electronic and optoelectronic devices ...
The presented thesis addresses the composition, inkjet-printing and low-temperature sintering of the...
As an alternative technology to replace lithographic process, direct printing of conductive nanoflui...
Electrical conductivity is a key factor in measuring performance of printed electronics, but the con...
The development of highly conductive Ag nanoparticle (NP)-based inkjet printed (IP) connections is a...
Ag nanoparticles were successfully prepared using a liquid reduction method with a suitable mixture ...
Printed electronics (PE) technology shows huge promise for the realisation of low-cost and flexible ...
Near infrared(NIR) sintering technology is a photonic sintering approach for metal nanoparticle inks...
Owing to its unique properties, silver (Ag) in the form of nanoparticle (NP) ink promises to play a ...
Thesis (Master's)--University of Washington, 2016-06Printed electronics is an emerging area of study...
Printed electronics refers to the technologies of fabricating electronic and optoelectronic devices ...
Krishna Rajan, Ignazio Roppolo, Annalisa Chiappone, Sergio Bocchini, Denis Perrone, Alessandro Chiol...
Inkjet printing of various nanoparticle inks, made from silver or copper nanoparticles, and its tran...
Printed electronics will bring to the consumer level great breakthroughs and unique products in the ...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...