Metallization of a polydimethylsiloxane (PDMS)-based substrate is a challenge due to the difficulties in forming crack-free polymer and metal features using standard deposition techniques. Frequently, additional adhesion layers, rigid substrates, multiple processing steps (lift-off and etching) and expensive metal sputtering techniques are required, to achieve such metal patterns. This work presents a novel and rapid technique for the direct metallization of PDMS substrates using photolithography and electroless copper plating. The method has the advantage of not requiring expensive vacuum processing or multiple metallization steps. Electroless copper layer is demonstrated to have a strong adhesion to PDMS substrate with a high conductivity...
This article presents a selective metallization method for the newly developed 3D printable thermopl...
This article reports the performance of different metallic ions and nanoparticles (Ag, Cu, Ni, Pd, C...
Stretchable electronics has attracted much interest recently because of its potential applications i...
Metallization of a polydimethylsiloxane (PDMS)-based substrate is a challenge due to the difficultie...
This thesis describes a novel microfabrication process to produce thick-film copper microstructures ...
The authors report a new patterned electroless metallization process for creating micro- and nanosca...
Polydimethylsiloxane (PDMS) is a flexible and biocompatible material widely used in the fabrication ...
International audienceA new efficient approach for selective metallization of flexible substrates su...
The study was conducted for fabrication of elastomeric wires by selective electroless metallization ...
This thesis examines various direct metallization methods for microelectronics and advanced manufa...
This article presents a selective metallization method for the newly developed 3D printable thermopl...
The motivation behind this research is to improve the interfacial layer bonding of metallic thin fil...
We report on low-energy metal ion implantation by filtered cathodic vacuum arc to create highly defo...
Stretchable large area electronics conform to arbitrarily-shaped 3D surfaces and enables comfortable...
Flexible and printable electronics are attractive techniques which are believed to be widespread and...
This article presents a selective metallization method for the newly developed 3D printable thermopl...
This article reports the performance of different metallic ions and nanoparticles (Ag, Cu, Ni, Pd, C...
Stretchable electronics has attracted much interest recently because of its potential applications i...
Metallization of a polydimethylsiloxane (PDMS)-based substrate is a challenge due to the difficultie...
This thesis describes a novel microfabrication process to produce thick-film copper microstructures ...
The authors report a new patterned electroless metallization process for creating micro- and nanosca...
Polydimethylsiloxane (PDMS) is a flexible and biocompatible material widely used in the fabrication ...
International audienceA new efficient approach for selective metallization of flexible substrates su...
The study was conducted for fabrication of elastomeric wires by selective electroless metallization ...
This thesis examines various direct metallization methods for microelectronics and advanced manufa...
This article presents a selective metallization method for the newly developed 3D printable thermopl...
The motivation behind this research is to improve the interfacial layer bonding of metallic thin fil...
We report on low-energy metal ion implantation by filtered cathodic vacuum arc to create highly defo...
Stretchable large area electronics conform to arbitrarily-shaped 3D surfaces and enables comfortable...
Flexible and printable electronics are attractive techniques which are believed to be widespread and...
This article presents a selective metallization method for the newly developed 3D printable thermopl...
This article reports the performance of different metallic ions and nanoparticles (Ag, Cu, Ni, Pd, C...
Stretchable electronics has attracted much interest recently because of its potential applications i...