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Update Data    giuseppe.barillaro@unipi.it    
Last update: 12/01/2023
 
Name:
Giuseppe Surname:  Barillaro
Institution: University of Pisa
Type of Institution: University
ORCID number: https://orcid.org/000-0001-6197-4851
Google Scholar: https://scholar.google.com/citations?hl=en&user=UOg7jpMAAAAJ&view_op=list_works&sortby=pubdate
Research Gate: https://www.researchgate.net/profile/Giuseppe-Bari
Country: Italy
WEB address: http://docenti.ing.unipi.it/g.barillaro/Home.html
Working groups of interest
-WG1 - Advances in Porous Materials and Technologies
-WG2 - Health
-WG3 - Energy
-WG4 - Environment
-WG5 - Management and Dissemination
Keywords
- Environment
- Health
- Macropores
- Mesopores
- Nanopores
- Porous Semiconductors
- Smart Functional Surfaces
- Technology
Research field (Free keywords) nanofabrication; (bio)sensors; nano photonics; nano medicine
Scientific expertise Giuseppe Barillaro is Full Professor at the University of Pisa. His main research interests concern development and characterization of new micro and nanostructured materials, devices, and systems with applications in microelectronics and photonics, (bio)sensing and (nano)medicine. G. Barillaro is author of more than 300 publications, among which >100 papers on peer reviewed international journals, and deposited over 20 Patents, 10 granted in US.
Relevant publications
(3 max.)
M.Corsi, A. Paghi, S. Mariani, G. Golinelli, A. Debrassi, G. Egri, G. Leo, E. Vandini, A. Vilella, L. Dähne, D. Giuliani, and G. Barillaro, Bioresorbable Nanostructured Chemical Sensor for Monitoring of pH Level In Vivo, Advanced Science 2202062 (2022).
S. Mariani, M. Corsi, A. Paghi, A. A. La Mattina, L. Strambini, F. P. Frontini, G. Di Giuseppe, G. Barillaro, 4D Printing of Plasmon-Encoded Tunable Polydimethylsiloxane Lenses for On-Field Microscopy of Microbes, Adv. Optical Mater. 2101610 (2021)
S.Mariani, V. Robbiano, L. M. Strambini, A. Debrassi, G. Egri, L. Dähne, G. Barillaro, Layer-by-layer biofunctionalization of nanostructured porous silicon for high-sensitivity and high-selectivity label-free affinity biosensing, Nature Communications, 9, 5256, 1-13 (2018)
Projects
(2 max.)
RESORB: On-Demand Bioresorbable OptoElectronic System for In-Vivo and In-Situ Monitoring of Chemotherapeutic Drugs, HORIZON EU, EIC PATHFINDER OPEN
 
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