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April 7, 2024Biosensors and Bioelectronics52 citationsOpen Access

Graphene derivative-based ink advances inkjet printing technology for fabrication of electrochemical sensors and biosensors

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MNMartin‐Alex NalepaDPDavid PanáčekIDIvan Dědek

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Abstract

The field of biosensing would significantly benefit from a disruptive technology enabling flexible manufacturing of uniform electrodes. Inkjet printing holds promise for this, although realizing full electrode manufacturing with this technology remains challenging. We introduce a nitrogen-doped carboxylated graphene ink (NGA-ink) compatible with commercially available printing technologies. The water-based and additive-free NGA-ink was utilized to produce fully inkjet-printed electrodes (IPEs), which demonstrated successful electrochemical detection of the important neurotransmitter dopamine. The cost-effectiveness of NGA-ink combined with a total cost per electrode of 0. 10 renders it a practical solution for customized electrode manufacturing. Furthermore, the high carboxyl group content of NGA-ink (13 wt. %) presents opportunities for biomolecule immobilization, paving the way for the development of advanced state-of-the-art biosensors. This study highlights the potential of NGA inkjet-printed electrodes in revolutionizing sensor technology, offering an affordable, scalable alternative to conventional electrochemical systems.

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Nalepa et al. (2024) studied this question.

synapsesocial.com/papers/68e701efb6db64358767b7e7https://doi.org/10.1016/j.bios.2024.116277
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