International audienceThe Laser-Induced Forward Transfer (LIFT) [J. Bohandy et al., J. Appl. Phys. 63 (4), (1988) 1158.] technique has been performed on thin layers of organic conducting material for applications in plastic micro-electronics. This simple, single step, direct printing technique enables to make surface micro patterning or localized deposition of material. This process is a promising alternative for manufacture of organic electronic components on flexible supports when usual techniques, such like ink jet printing, cannot be considered. For instance, when the organic material has no solubility properties or when complex architectures are needed. It can be applied to sensitive materials without altering their properties [D. B. C...
Laser-induced forward transfer (LIFT) and two-photon polymerization (TPP) have proven their abilitie...
Laser-induced forward transfer (LIFT) is a technique for printing thin-film materials in a solid or ...
Laser direct-write (LDW) techniques based on laser-induced forward transfer (LIFT) of func-tional ma...
The Laser-Induced Forward Transfer (LIFT) [J. Bohandy et al., J. Appl. Phys. 63 (4), (1988) 1158.] t...
The development of organic electronic requires a non contact digital printing process. The European ...
International audienceThis paper deals with transfer induced by laser of thin layers of a conducting...
International audienceActive layers involved in top contact organic thin film transistors (TC-OTFTs)...
Laser-Induced Forward Transfer (LIFT) is a well established method for the spatially selective depos...
International audienceOrganic thin-film transistor (OTFT) devices were achieved using the laser-indu...
The focusing power of lasers make them adequate tools for patterning applications that require high ...
International audienceLaser-induced forward transfer (LIFT) has been used to deposit pixels of an or...
International Symposium on High Power Laser Ablation (HPLA), Santa Fe, NM, APR 30-MAY 03, 2012Intern...
The Laser-Induced Forward Transfer (LIFT) method exists as a relatively simple and versatile additiv...
International audienceWe report on the one-step laser printing of multi-layered org.-based field eff...
L’utilisation de composés organiques comme matériaux actifs représente la prochaine génération techn...
Laser-induced forward transfer (LIFT) and two-photon polymerization (TPP) have proven their abilitie...
Laser-induced forward transfer (LIFT) is a technique for printing thin-film materials in a solid or ...
Laser direct-write (LDW) techniques based on laser-induced forward transfer (LIFT) of func-tional ma...
The Laser-Induced Forward Transfer (LIFT) [J. Bohandy et al., J. Appl. Phys. 63 (4), (1988) 1158.] t...
The development of organic electronic requires a non contact digital printing process. The European ...
International audienceThis paper deals with transfer induced by laser of thin layers of a conducting...
International audienceActive layers involved in top contact organic thin film transistors (TC-OTFTs)...
Laser-Induced Forward Transfer (LIFT) is a well established method for the spatially selective depos...
International audienceOrganic thin-film transistor (OTFT) devices were achieved using the laser-indu...
The focusing power of lasers make them adequate tools for patterning applications that require high ...
International audienceLaser-induced forward transfer (LIFT) has been used to deposit pixels of an or...
International Symposium on High Power Laser Ablation (HPLA), Santa Fe, NM, APR 30-MAY 03, 2012Intern...
The Laser-Induced Forward Transfer (LIFT) method exists as a relatively simple and versatile additiv...
International audienceWe report on the one-step laser printing of multi-layered org.-based field eff...
L’utilisation de composés organiques comme matériaux actifs représente la prochaine génération techn...
Laser-induced forward transfer (LIFT) and two-photon polymerization (TPP) have proven their abilitie...
Laser-induced forward transfer (LIFT) is a technique for printing thin-film materials in a solid or ...
Laser direct-write (LDW) techniques based on laser-induced forward transfer (LIFT) of func-tional ma...