The dynamic properties of inkjet-printed Ag thin films on flexible substrates were measured using flexural wave propagation. The Ag nanoparticle suspension was inkjet-printed on polyimide (PI), silicon wafer, and glass. The effects of flexible substrates on the dynamic properties of the films were investigated. Beam-shaped Ag-printed substrates were fabricated by pico-second laser pulse cutting. The wave approach was presented to analyze the vibrations of the thin film on the substrates. The Young’s modulus and loss factor of the Ag thin films with the substrates were represented by the combined bending stiffness of the bilayer beam. The vibration response of the base-excited cantilever was measured using an accelerometer and laser Doppler ...
In this study, the mechanical and electrical properties of printed Ag nanoparticle colloid were anal...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
In this work, the novel method of intense pulsed light (IPL) sintering of a nanoparticle silver ink ...
The dynamic properties of inkjet-printed Ag thin films on flexible substrates were measured using fl...
The dynamic properties of inkjet-printed thin films on flexible polyimide (PI), glass, wafer substra...
This paper aims to investigate the effects of the substrate, the printed line thickness and the sint...
Recently, inkjet printing technology has received growing attention as a method to produce low-cost ...
Transfer printing, a promising method for fabricating multi-scale structures on various substrates s...
The present study is intended to develop and test a cost-effective and efficient printing method for...
Inkjet printing is novel approach in drug manufacturing that enables dispensing precise volumes of i...
In this paper, the main activity was to investigate how different substrates, temperature of sinteri...
International audienceColloidal suspensions of nanoparticles are increasingly employed in the fabric...
Ink-jet printed devices on the flexible substrate are inexpensive and large area compatible as compa...
We studied the recovery of the elastic constant of sputtered Ag films on monocrystal Si substrates b...
The microstructural characterization of inkjet-printed Ag films sintered at various conditions was c...
In this study, the mechanical and electrical properties of printed Ag nanoparticle colloid were anal...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
In this work, the novel method of intense pulsed light (IPL) sintering of a nanoparticle silver ink ...
The dynamic properties of inkjet-printed Ag thin films on flexible substrates were measured using fl...
The dynamic properties of inkjet-printed thin films on flexible polyimide (PI), glass, wafer substra...
This paper aims to investigate the effects of the substrate, the printed line thickness and the sint...
Recently, inkjet printing technology has received growing attention as a method to produce low-cost ...
Transfer printing, a promising method for fabricating multi-scale structures on various substrates s...
The present study is intended to develop and test a cost-effective and efficient printing method for...
Inkjet printing is novel approach in drug manufacturing that enables dispensing precise volumes of i...
In this paper, the main activity was to investigate how different substrates, temperature of sinteri...
International audienceColloidal suspensions of nanoparticles are increasingly employed in the fabric...
Ink-jet printed devices on the flexible substrate are inexpensive and large area compatible as compa...
We studied the recovery of the elastic constant of sputtered Ag films on monocrystal Si substrates b...
The microstructural characterization of inkjet-printed Ag films sintered at various conditions was c...
In this study, the mechanical and electrical properties of printed Ag nanoparticle colloid were anal...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
In this work, the novel method of intense pulsed light (IPL) sintering of a nanoparticle silver ink ...