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Development of an electrowetting-on-dielectric cellulose-based conductive sensor using direct inkjet printed silver nanoparticles

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polysaccharides-05-00048.pdf (4,845Mb)
 
10.3390/polysaccharides5040048
 
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Caro Pérez, OriolMés informació
Roncero Vivero, María BlancaMés informacióMés informacióMés informació
Casals Terré, JasminaMés informacióMés informacióMés informació
Document typeArticle
Defense date2024-12-02
PublisherMultidisciplinary Digital Publishing Institute (MDPI)
Rights accessOpen Access
Attribution 4.0 International
This work is protected by the corresponding intellectual and industrial property rights. Except where otherwise noted, its contents are licensed under a Creative Commons license : Attribution 4.0 International
ProjectTRANSFORMACION DE MATERIALES CELULOSICOS EN BIOPRODUCTOS AVANZADOS Y ECOLOGICOS (AEI-PID2020-114070RB-I00)
Abstract
In the quest for sustainable and efficient solutions for modern electronics, flexible electronic devices have garnered global attention due to their potential to revolutionize various technological applications. The manufacturing of these devices poses significant challenges, particularly regarding environmental sustainability and ease of production. A novel method employing direct inkjet printing of silver nanoparticle (npAg) ink onto cellulose nanocrystal (CNC) substrates is presented, offering a promising alternative to conventional methods. This study demonstrates the ability of CNCs to serve as a flexible and biodegradable substrate that does not require complex post-printing treatments to achieve adequate electrical performance. This method was implemented in the fabrication of an electrowetting-on-dielectric (EWOD) device, achieving circuit patterns with high resolutions and reduced resistances. The findings not only validate the use of CNCs in flexible electronic applications but also underscore the potential of advanced printing techniques to develop flexible electronics that are environmentally sustainable and technically feasible
CitationCaro-Perez, O.; Roncero, M.B.; Casals-Terré, J. Development of an electrowetting-on-dielectric cellulose-based conductive sensor using direct inkjet printed silver nanoparticles. "Polysaccharides", 2 Desembre 2024, vol. 5, núm. 4, p. 761-782. 
URIhttp://hdl.handle.net/2117/421880
DOI10.3390/polysaccharides5040048
ISSN2673-4176
Publisher versionhttps://www.mdpi.com/2673-4176/5/4/48
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