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Localized pulsed electrodeposition (L-PED) is a technique for direct 3D printing of free-standing and layer-by-layer micro/nano-scale metallic structures at the tip of an electrolyte containing nozzle. The method follows the same principle for metal deposition as the traditional electrodeposition (electroplating), however the area of deposition is limited by the size of a liquid bridge (meniscus) formed between the nozzle tip and the substrate. The unique advantage of the L-PED process is the possibility of the control over the spatial microstructure of the printed metal in 3D geometries by adjusting deposition parameters (peak current density, on time, off time, etc.). This method can be used in various applications in nanotechnology, in particular for 3-dimensional electronics and sensor

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  • Localized pulsed electrodeposition (L-PED) is a technique for direct 3D printing of free-standing and layer-by-layer micro/nano-scale metallic structures at the tip of an electrolyte containing nozzle. The method follows the same principle for metal deposition as the traditional electrodeposition (electroplating), however the area of deposition is limited by the size of a liquid bridge (meniscus) formed between the nozzle tip and the substrate. The unique advantage of the L-PED process is the possibility of the control over the spatial microstructure of the printed metal in 3D geometries by adjusting deposition parameters (peak current density, on time, off time, etc.). This method can be used in various applications in nanotechnology, in particular for 3-dimensional electronics and sensors. (en)
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  • Localized pulsed electrodeposition (L-PED) is a technique for direct 3D printing of free-standing and layer-by-layer micro/nano-scale metallic structures at the tip of an electrolyte containing nozzle. The method follows the same principle for metal deposition as the traditional electrodeposition (electroplating), however the area of deposition is limited by the size of a liquid bridge (meniscus) formed between the nozzle tip and the substrate. The unique advantage of the L-PED process is the possibility of the control over the spatial microstructure of the printed metal in 3D geometries by adjusting deposition parameters (peak current density, on time, off time, etc.). This method can be used in various applications in nanotechnology, in particular for 3-dimensional electronics and sensor (en)
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  • Localized pulsed electrodeposition (en)
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