Digital-Based Potentiostat and Mesoporous Microelectrode Co-Design for Non-Enzymatic Glucose Detection at 0.3V- <i>V</i> <sub>DD</sub> and 1.65nW-Power

Andrea De Gregorio, Mara Serrapede, Danilo Kaddouri, Paolo Angelini, Giuseppe Bruno, Simone Luigi Marasso, Salvatore Guastella, Andrea Lamberti, Paolo Crovetti

Open source

DOI
10.1109/tbcas.2026.3728240
Published
2026
Container
IEEE Transactions on Biomedical Circuits and Systems
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Open access
unknown

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BibTeX

@article{allodium:10.1109/tbcas.2026.3728240,
  title = {Digital-Based Potentiostat and Mesoporous Microelectrode Co-Design for Non-Enzymatic Glucose Detection at 0.3V-
                    <i>V</i>
                    <sub>DD</sub>
                    and 1.65nW-Power},
  author = {Andrea De Gregorio and Mara Serrapede and Danilo Kaddouri and Paolo Angelini and Giuseppe Bruno and Simone Luigi Marasso and Salvatore Guastella and Andrea Lamberti and Paolo Crovetti},
  year = {2026},
  journal = {IEEE Transactions on Biomedical Circuits and Systems},
  doi = {10.1109/tbcas.2026.3728240},
  url = {https://doi.org/10.1109/tbcas.2026.3728240}
}

RIS

TY  - JOUR
TI  - Digital-Based Potentiostat and Mesoporous Microelectrode Co-Design for Non-Enzymatic Glucose Detection at 0.3V-
                    <i>V</i>
                    <sub>DD</sub>
                    and 1.65nW-Power
AU  - Andrea De Gregorio
AU  - Mara Serrapede
AU  - Danilo Kaddouri
AU  - Paolo Angelini
AU  - Giuseppe Bruno
AU  - Simone Luigi Marasso
AU  - Salvatore Guastella
AU  - Andrea Lamberti
AU  - Paolo Crovetti
PY  - 2026
JO  - IEEE Transactions on Biomedical Circuits and Systems
DO  - 10.1109/tbcas.2026.3728240
UR  - https://doi.org/10.1109/tbcas.2026.3728240
ER  - 

APA

Gregorio, A. D., Serrapede, M., Kaddouri, D., Angelini, P., Bruno, G., Marasso, S. L., Guastella, S., Lamberti, A., & Crovetti, P. (2026). Digital-Based Potentiostat and Mesoporous Microelectrode Co-Design for Non-Enzymatic Glucose Detection at 0.3V- <i>V</i> <sub>DD</sub> and 1.65nW-Power. IEEE Transactions on Biomedical Circuits and Systems. https://doi.org/10.1109/tbcas.2026.3728240

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