Receiving hours
Lunedì 12:00-13:00
Curriculum
(CV aggiornato al 18/05/2026)
Dipartimento di Scienze di Base ed Applicate per l’Ingegneria, Sapienza Università di Roma, Via A. Scarpa 16, 00161 Roma, Italia
telegono: +39 06 4991 6981 (Ufficio RM004 L010)
+39 06 4991 6941 (Laboratorio RM008 L1014-L015)
email: agostino.occhicone@uniroma1.it
orcid: https://orcid.org/0000-0001-8295-6222
POSIZIONE RICOPERTA: Ricercatore RTD-A presso il Dipartimento di Scienze di Base e Applicate per l’Ingegneria (SBAI), Sapienza Università di Roma, Italia
ESPERIENZA PROFESSIONALE
Nov 2021 – presente Ricercatore RTD-A (SSD PHYS 03/A, GSD 02/PHYS-03)
Laboratorio di Fotonica Molecolare, Dipartimento di Scienze di Base e Applicate per l’Ingegneria (SBAI), Sapienza Università di Roma, Italia.
Set 2022 – presente Ricercatore Affiliato IIT Center for Life Nano- & Neuro-Science (CLN2S)
Centro Life Nano- & Neuro-Science presso Università di Roma “La Sapienza” https://www.iit.it/it/clns-sapienza
Dic 2020 – Ott 2021 Assegnista di ricerca (SSD FIS/01, SC 02/B1)
Laboratorio di Fotonica Molecolare, Dipartimento di Scienze di Base e Applicate per l’Ingegneria (SBAI), Sapienza Università di Roma, Italia.
Dic 2018 – Nov 2020 Assegnista di ricerca: Progetto “TURNOFF” (SSD FIS/01, SC 02/B1)
Laboratorio di Fotonica Molecolare, Dipartimento di Scienze di Base e Applicate per l’Ingegneria (SBAI), Sapienza Università di Roma, Italia.
Giu 2018 – Nov 2018 Assegnista di ricerca (SSD FIS/01, SC 02/B1)
Laboratorio di Fotonica Molecolare, Dipartimento di Scienze di Base e Applicate per l’Ingegneria (SBAI), Sapienza Università di Roma, Italia.
ISTRUZIONE E FORMAZIONE
Nov 2014 – Mar 2018 Ph.d. in Meccanica teorica ed Applicata (XXX ciclo)
Dipartimento di Ingegneria Meccanica ed Aerospaziale (DIMA), Sapienza Università di Roma, Italia.
Set 2011 – Lug 2014 Laurea Magistrale in Ingegneria delle Nanotecnologie
Sapienza Università di Roma, Italia.
Set 2007 – Feb 2011 Laurea Triennale in Scienza e Ingegneria dei Materiali
Università Federico II, Napoli, Italia
ULTERIORI INFORMAZIONI
Indici Bibliometrici
Numero documenti: 36
(Fonte: Scopus, aggiornato al 31/03/2026)
Citazioni 406
Numero medio di citazioni per pubblicazione 11
H-index (indice di Hirsch) 11
Pubblicazioni su Rivista
[1] J. Barolak, A. Occhicone, F. Michelotti, M. Finazzi, P. Biagioni, and G. Pellegrini, Leveraging low index contrast to reduce the polarization anisotropy in one-dimensional photonic crystals, Optics Express, 34(2026), 14185-14198. https://doi.org/10.1364/OE.585917
[2] A. Occhicone, Di Matteo Paola, Heidari Maryam, Chiappetta Daniele, Danz Norbert, Munzert Peter, Allegretti Matteo, Mandoj Chiara, Sinibaldi Alberto, Michelotti Francesco, Taguchi optimization of CPTES chemistry for photonic crystal-based biosensors: Detection of anti-SARS-CoV-2 antibodies in human serum, Sensors and Actuators. B: Chemical, 448(2026), p. 11, http://doi.org/10.1016/j.snb.2025.138979.
[3] Gaganina, A.; Occhicone, A.; Chiappetta, D.; Di Matteo, P.; Danz, N.; Allegretti, M.; Munzert, P.; Mandoj, C.; Michelotti, F.; Sinibaldi, A. Highly Sensitive Detection of Anti-SARS-CoV-2 Antibodies in Human Serum Using Bloch Surface Wave Biosensor, vol. 26(2025), 46, SENSORS, https://doi.org/10.3390/s26010046.
[4] A. Occhicone, M. Pea, R. Polito, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, M. Ortolani, L. Baldassarre, F. Michelotti, Mid-infrared ellipsometry enhanced by means of localized electromagnetic states of a one-dimensional photonic crystal, Scientific Reports, 15(2025), http://doi.org/10.1038/s41598-025-17011-3, WOS:001565399800028, scopusId 2-s2.0-105014798194, pubmedId 40885771.
[5] A. Sinibaldi, F. Chiavaioli, A. Occhicone, N. Danz, P. Munzert, F. Baldini, A. Giannetti, F. Michelotti, Picomolar detection of tau protein using 1D photonic crystal biochips for alzheimer's disease diagnosis, Advanced Sensor Research, 4(2025), http://doi.org/10.1002/adsr.202400164, WOS:001469579800001.
[6] A. Sinibaldi, M. Allegretti, N. Danz, E. Giordani, P. Munzert, A. Occhicone, P. Giacomini, F. Michelotti, Direct competitive assay for ERBB2 detection in breast cancer cell lysates using 1-D photonic crystals-based biochips, IEEE Sensors Letters, 7(2023), http://doi.org/10.1109/LSENS.2023.3297372, WOS:001040092200002, scopusId 2-s2.0-85165380550.
[7] T. Pileri, A. Sinibaldi, A. Occhicone, ..., P. Giacomini, F. Michelotti. Direct competitive assay for HER2 detection in human plasma using Bloch surface wave-based biosensors, Analytical Biochemistry, 684(2023), 115374. https://doi.org/10.1016/j.ab.2023.115374
[8] A. Occhicone, A. Sinibaldi, D. Chiappetta, ..., C. Mandoj, F. Michelotti. Detection of anti-SARS CoV-2 antibodies in human serum by means of Bloch surface waves on 1D photonic crystal biochips, Biosensors and Bioelectronics: X, 15(2023), 100413. https://doi.org/10.1016/j.biosx.2023.100413
[9] A. Occhicone, F. Michelotti, P. Rosa, ..., G. Pignataro, A. Sinibaldi. Enhanced fluorescence detection of miRNA by means of Bloch surface wave-based biochips, Analyst, 148(2023), 4429–4437. https://doi.org/10.1039/D3AN00804E
[10] A. Occhicone, R. Polito, F. Michelotti, ..., P. Calvani, A. Nucara. Low-Temperature Stability and Sensing Performance of Mid-Infrared Bloch Surface Waves on a One-Dimensional Photonic Crystal, ACS Applied Materials and Interfaces, 14(2022), 43853–43860. https://doi.org/10.1021/acsami.2c07894
[11] A. Occhicone, P. Del Porto, N. Danz, P. Munzert, A. Sinibaldi, and F. Michelotti. Enhanced fluorescence detection of interleukin 10 by means of 1d photonic crystals, Crystals, 11(2021), 12, 1517. https://doi.org/10.3390/cryst11121517
[12] N. Danz, A. Occhicone, C. Pflumm, P. Munzert, F. Michelotti, and D. Michaelis. Spectral analysis of Organic LED emitters’ orientation in thin layers by resonant emission on dielectric stacks, Optics Express, 29(2021), 5, 6608-6619. https://doi.org/10.1364/OE.417531
[13] A. Occhicone, M. Pea, R. Polito, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, P. Biagioni, F. Michelotti, M. Ortolani, and L. Baldassarre. Spectral characterization of mid-infrared Bloch Surface Waves excited on a truncated 1D photonic crystal, ACS Photonics, 8(2021), 1, 350–359. https://doi.org/10.1021/acsphotonics.0c01657
[14] G. Sinibaldi, A. Occhicone, F. Alves Pereira, D. Caprini, L. Marino, F. Michelotti, and C. M. Casciola. Laser induced cavitation: plasma generation and breakdown shockwave, Physics of Fluids, 31(2019), 103302. https://doi.org/10.1063/1.5119794
[15] A. Occhicone, A. Sinibaldi, F. Sonntag, P. Munzert, N. Danz, and F. Michelotti. Study of fluid dynamics at the boundary wall of a microchannel by Bloch surface waves, Opt. Lett., 44(2019), 1932-1935. https://doi.org/10.1364/OL.44.001932
[16] A. Occhicone, G. Sinibaldi, N. Danz, C.M. Casciola, and F. Michelotti. Cavitation bubble wall pressure measurement by an electromagnetic surface wave enhanced pump-probe configuration, Appl. Phys. Lett., 114(2019), 134101. https://doi.org/10.1063/1.5089206
[17] A. Sinibaldi, A. Fieramosca, N. Danz, P. Munzert, A. Occhicone, C. Barolo, and F. Michelotti. Effects of Reabsorption due to Surface Concentration in Highly Resonant Photonic Crystal Fluorescence Biosensors, J. of Phys. Chem. C, 122(2018), 26281-26287. https://doi.org/10.1021/acs.jpcc.8b09095
[18] A. Sinibaldi, A. Occhicone, P. Munzert, N. Danz, F. Sonntag, and F. Michelotti. Label-Free Monitoring of Human IgG/Anti-IgG Recognition Using Bloch Surface Waves on 1D Photonic Crystals, Biosensors, 8(2018), 71. https://doi.org/10.3390/bios8030071
[19] A. Sinibaldi, C. Sampaoli, N. Danz, P. Munzert, F. Sonntag, F. Centola, A. Occhicone, E. Tremante, P. Giacomini and F. Michelotti. Bloch Surface Waves Biosensors for High Sensitivity Detection of Soluble ERBB2 in a Complex Biological Environment, Biosensors, 7(2017), 33. https://doi.org/10.3390/bios7030033
[20] A. Sinibaldi, C. Sampaoli, P. Munzert, L. Sibilio, N. Danz, F. Sonntag, A. Occhicone, E. Tremante, P. Giacomini, and F. Michelotti. Detection of soluble ERBB2 in breast cancer cell lysates using a combined label-free/fluorescence platform based on Bloch surface waves, Biosens. Bioelectron., 92(2017), 125-130. https://doi.org/10.1016/j.bios.2017.02.012
[21] A. Occhicone, A. Sinibaldi, F. Sonntag, P. Munzert, N. Danz and F. Michelotti. A novel technique based on Bloch surface waves sustained by one-dimensional photonic crystals to probe mass transport in a microfluidic channel, Sens. Act. B: Chem., 247(2017), 532-539. https://doi.org/10.1016/j.snb.2017.03.041
[22] O. Anopchenko, A. Occhicone, R. Rizzo, A. Sinibaldi, G. Figliozzi, N. Danz, P. Munzert, F. Michelotti. Effect of thickness disorder on the performance of photonic crystal surface wave sensors, Opt. express, 24(2016), 7728-7742. https://doi.org/10.1364/OE.24.007728
[23] F. Michelotti, S. Schmieder, A. Anopchenko, P. Munzert, A. Sinibaldi, R. Chandrawati, S. Rana, F. Sonntag, A. Occhicone, L. Napione, M. M. Stevens, E. Maillart, F. E. Hibti, C. Frydman, N. Danz. Label-free and fluorescence biosensing platform using one-dimensional photonic crystal chips, Proc. SPIE, Integrated Optics: Devices, Materials, and Technologies XX, 2016.
[24] A. Sinibaldi, N. Danz, A. Anopchenko, P. Munzert, S. Schmieder, R. Chandrawati, R. Rizzo, S. Rana, F. Sonntag, A. Occhicone, L. Napione, S. De Panfilis, M. M. Stevens, F. Michelotti. Label-Free Detection of Tumor Angiogenesis Biomarker Angiopoietin 2 Using Bloch Surface Waves on One Dimensional Photonic Crystals, J. of Lightwave Tech., 33(2015), 3385-3393. https://doi.org/10.1109/JLT.2015.2448795
Conference Proceedings
[25] A. Occhicone, A. Sinibaldi, A. Gaganina, F. Michelotti. Bloch Surface Modes Propagating at the Surface of 1D Photonic Crystals for Label-Free and Fluorescence Detection of Biomarkers in Human Serum, IEEE Photonics Conference IPC 2025 Proceedings, (2025). https://doi.org/10.1109/IPC65510.2025.11282175
[26] A. Sinibaldi, D. Chiappetta, A. Occhicone, ... P. Munzert, F. Michelotti. Investigating angiotensin converting enzyme-2 and SARS CoV-2 spike protein interactions using a combined label-free and fluorescence detection approach, SPIE, Progress in Biomedical Optics and Imaging Proceedings, 13338 (2025).
[27] A. Sinibaldi, F. Chiavaioli, A. Occhicone, …, Francesco Michelotti. Enhanced fluorescence detection of tau protein using photonic crystal-based biochips: a novel tool for Alzheimer's disease diagnostics, SPIE, Frontiers in Biological Detection: From Nanosensors to Systems XVII 13338 (2025).
[28] A. Occhicone, M. Pea, R. Polito, ... L. Baldassarre, F. Michelotti. Mid-Infrared spectroscopy enhanced by means of surface electromagnetic states on one-dimensional photonic crystals, International Conference on Metamaterials Photonic Crystals and Plasmonics, 2025, pp. 1152–1153
[29] G. Pellegrini, F. Michelotti, A. Occhicone, M. Celebrano, M. Finazzi, P. Biagioni. Derivative-free optimization for optical chirality enhancement, EOS Annual Meeting (EOSAM 2024), 2024, 309(05005).
[30] A. Sinibaldi, M. Allegretti, N. Danz, ..., A. Occhicone, P. Giacomini, F. Michelotti. Direct Competitive Assay for ERBB2 Detection in Breast Cancer Cell Lysates Using 1-D Photonic Crystals-Based Biochips, IEEE Sensors Letters, 2023, 7(8), 4501204.
[31] A. Occhicone, A. Sinibaldi, T. Pileri, ..., L. Conti, F. Michelotti. Label-free detection of SARS-CoV-2 neutralizing antibodies in human serum by Bloch surface waves on 1D photonic crystal biochips, Optics InfoBase Conference Papers, 2022, FTh1D.1.
[32] T. Pileri, A. Sinibaldi, N. Danz, G. Pignataro, P. Munzert, A. Occhicone, F. Sonntag, F. Michelotti. Enhanced fluorescence detection of miRNAs using one-dimensional photonic crystal-based biochips, Progress in Biomedical Optics and Imaging (SPIE), Frontiers in Biological Detection: From Nanosensors to Systems XIV 119792022, 1197909 (2022)
[33] R. Polito, A. Occhicone, M. Pea, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, P. Biagioni, F. Michelotti, M. Ortolani, and L. Baldassarre. Mid-Infrared Bloch Surface Waves for biosensing applications, IEEE 46th International Conference on Infrared, Millimeter, and Terahertz Waves, (IRMMW-THz) (2021)
[34] M. Ortolani, M. Pea, A. Occhicone, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, R. Polito, A. Nucara, L. Baldassarre, F. Michelotti. Spectroscopic Evidence of Bloch Surface Waves in the Mid Infrared, IEEE 44th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz) (2019), 1-3.
[35] A. Sinibaldi, N. Danz, E. Sepe, P. Munzert, A. Occhicone, M. Allegretti, E. Giordani, P. Giacomini, and F. Michelotti. Label-free and fluorescence photonic crystal biochips for early cancer biomarker detection, Frontiers in Biological Detection: From Nanosensors to Systems XI 10895, 1089507 (2019).
[36] G. Sinibaldi, A. Occhicone, F.A. Pereira, D. Caprini, L. Marino, F. Michelotti, C.M. Casciola. Laser induced breakdown and bubble cavitation, Proc. of the 10th International Symposium on Cavitation (CAV2018), ASME Press.
Conferenze/Contributi
[1] Workshop “Biosensors and Nanomedicine”, Roma, Aula Marconi CNR piazzale Aldo Moro 7, March 18, 2026
Oral contribution (Invited): “Bloch surface modes on 1D photonic crystals for label-free andfluorescence biomarkers detection”, A. Occhicone, A. Sinibaldi, D. Chiappetta, P. Di Matteo, P. Rosa, T. Pileri, P. Munzert, N. Danz, and F. Michelotti
[2] Plasmonica 2025, Modena, June 25-27, 2025
Oral contribution: “Detection of anti-SARS CoV-2 antibodies in human serum by Localized Surface States on 1D photonic crystal biochips”, A. Occhicone, A. Sinibaldi, D. Chiappetta, P. Di Matteo, A. Gaganina, P. Munzert, N. Danz, F. Sonntag, M. Allegretti, V. De Pascale, C. Mandoj, L. Conti, and F. Michelotti
[3] 15th International Conference on Metamaterials, Photonic Crystals and Plasmonics (Meta 2025), Torremolinos (Malaga, E), July 22-25, 2025
Poster contribution: “Mid-Infrared spectroscopy enhanced by means of surface electromagnetic states on one-dimensional photonic crystals”, A. Occhicone, M. Pea, R. Polito, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, M. Ortolani, L. Baldassarre, and F. Michelotti
[4] Nanoinnovation (D34 Health at Nanoinnovation 2024: Digital Twin: the healthcare new era), Roma, Italy, 9-13 September 2024
Oral contribution: “Enhanced fluorescence detection of miRNA by means of Bloch surface wave-based biochips”, A. Occhicone, F. Michelotti, P. Rosa, D. Chiappetta, T. Pileri, P. Del Porto, N. Danz, P. Munzert, G. Pignataro, and A. Sinibaldi.
[5] Jena Online Symposium for Digital Education in STEM, Jena, Germany, 29-30 November 2022. (online)
Oral contribution: "Remotely controlled optical ellipsometer on the WEB”, A. Occhicone, F. Michelotti.
[6] 2022 FiO LS Conference, Rochester, NY, USA, 17 - 20 October 2022
Oral contribution: “Label-Free detection of SARS-CoV-2 Neutralizing antibodies in human serum by Bloch surface waves on 1D photonic crystal biochips”, A. Occhicone, A. Sinibaldi, T. Pileri, P. Di Matteo, D. Chiappetta, P. Munzert, N. Danz, F. Sonntag, M. Allegretti, V. De Pascale, C. Mandoj, L. Conti, and F. Michelotti
[7] International Conference of Quantum, Nonlinear and Nanophotonics (ICQNN), Jena, Germany, 5-9 september 2022
Poster contribution: “Mid-Infrared label-free sensing enhanced by Bloch surface waves”, A. Occhicone, R. Polito, M. Pea, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, P. Biagioni, F. Michelotti, M. Ortolani, L. Baldassarre.
[8] 7th International Conference on Bio-Sensing Technology, Sitges, Spain, May 22-25, 2022
Oral contribution: “Reliable bioassays by means of a combined label-free/fluorescence biosensing platform based on 1D photonic crystals biochips”, A. Occhicone, A. Sinibaldi, T. Pileri, N. Danz, P. Del Porto, P. Munzert, and F. Michelotti.
Poster contribution: “Mid-Infrared label-free sensing enhanced by Bloch surface waves”, A. Occhicone, R. Polito, M. Pea, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, A. Notargiacomo, A. Nucara, P. Biagioni, F. Michelotti, M. Ortolani, and L. Baldassarre.
[9] Single-Molecule Sensors and Nano-Systems, Online Conference, November 9-11, 2020
Poster contribution: “Study of fluid dynamics at the boundary wall of a microchannel by Bloch surface waves”, A. Occhicone, A. Sinibaldi, F. Sonntag, P. Munzert, N. Danz, and F. Michelotti.
[10] Optical Microsystems 2019 (OµS19) EOS Conference, Anacapri (NA), September 9-11, 2019
Oral contribution: “Experimental Evidence of Mid-infrared Bloch Surface Waves”, M. Ortolani, M. Pea, A. Occhicone, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, R. Polito, A. Nucara, L. Baldassarre, and F. Michelotti.
[11] Plasmonica 2019, Napoli, June 19-21, 2019
Oral contribution: “Mid-infrared Bloch Surface Waves for Sensing Biomolecules by their Fingerprints”, M. Ortolani, M. Pea, A. Occhicone, V. Giliberti, A. Sinibaldi, F. Mattioli, S. Cibella, R. Polito, A. Nucara, L. Baldassarre, and F. Michelotti.
[12] EFMC12, Vienna (Au), September 9-13, 2018
Oral contribution: “Bloch Surface Waves Probe of Pressure Shock Waves”, A. Occhicone, G. Sinibaldi, C.M. Casciola, and F. Michelotti.
[13] Flow 17, Paris (FR), July 3-5, 2017
Poster contribution: “A novel technique based on Bloch surface waves sustained by one-dimensional photonic crystals to probe mass transport in a microfluidic channel”, A. Occhicone, A. Sinibaldi, F. Sonntag, P. Munzert, N. Danz and F. Michelotti.
Poster contribution: “Laser induced cavitation and bubble dynamics”, G. Sinibaldi, A. Occhicone, F. Pereira, D. Caprini, M. Chinappi, L. Marino, F. Michelotti and C.M. Casciola.
[14] Cavitation Modelling and Experiments, Preci (IT), July 4-7, 2016
Oral contribution: “Advanced Optical Techniques for the Study of μ-Fluidodynamic Phenomena”, A. Occhicone, A. Sinibaldi, G. Sinibaldi, A. Anopchenko, D. Caprini, N. Danz, C. M. Casciola and F. Michelotti.
[15] School of Photonics 2016: Plasmonics and Nano-Optics, Cortona (AR), July 10-14, 2016
Poster contribution: “Monitoring of Micro Fluidic Flow Conditions by Bloch Surface Waves", A. Occhicone, A. Sinibaldi, A. Anopchenko, and F. Michelotti.
[16] Nanoinnovation, Roma (IT), September 20-23, 2016.
Revisore Scientifico
Reviewer per i seguenti giornali:
Optics Letters (I.F.: 3.27, 1 peer review);
Scientific Reports (I.F.: 3.80, 2 peer review);
Biosensors (I.F.: 5.18, 5 peer review);
Materials (I.F.: 3.10, 2 peer review);
Optik (I.F.: 2.44, 2 peer review);
J. Fluids Eng. Trans. ASME (I.F.: 1.83, 1 peer review);
Micromachines (I.F.: 3.22, 2 peer review);
Photonics Research (I.F.: 6.80, 1 peer review);
Sensors (I.F.: 3.40, 2 peer review);
Applied Sciences (I.F.: 2.50, 1 peer review);
Flow Measurement and Instrumentation (I.F.: 2.30, 1 peer review);
Optics and Laser Technology (I.F.: 5.25, 4 peer review);
International Nano Letters (I.F.: 3.82, 1 peer review);
Systems Microbiology and Biomanufacturing (I.F.: 3.14, 1 peer review);
The European Physical Journal D (I.F.: 1.39, 1 peer review);
Wiley, International Journal of Optics (I.F.: 1.80, 1 peer review);
Crystals (I.F.: 2.4, 2 peer review);
Optics (I.F.: 1.6, 1 peer review).
Esperienze di Insegnamento
Codocente di “Biophotonics laboratory” (36 h - 3 CFU) per il corso di Laurea Magistrale in Ingegneria delle nanotecnologie a.a. 2023-2024, 2024-2025, 2025-2026.
Codocente di Fisica II e Laboratorio (45 h - 3 CFU) per il corso di Laurea triennale in Ingegneria Aerospaziale a.a. 2024-2025, 2025-2026.
Codocente di Fisica II (30 h - 3 CFU) per il corso di Laurea triennale in Ingegneria Aerospaziale a.a. 2021-2022, 2022-2023, 2023-2024.
Codocente di Fisica (36 h - 3 CFU) per il corso di Laurea in Ingegneria Edile e Architettura a.a. 2021-2022, 2022-2023.
Teza missione
Sapienza Remote LAB in progetto DEH (2024-2026). Sviluppo di un LAB remoto di Ottica con accesso da Remoto (https://idea.uniroma1.it/course/view.php?id=128). Presso il Laboratorio di Fotonica Molecolare del dipartimento SBAI, è stato allestito un setup didattico ad accesso remoto che permettesse l’implementazione di esperimenti di ottica in tempo reale. La piattaforma è stata sviluppata per permettere a studenti con ogni grado di preparazione di svolgere esperimenti di ottica geometrica ed ottica fisica direttamente dal PC di casa.
Progetto “Didattica Innovativa”, Università di Roma “La Sapienza” (2018). Il progetto è stato realizzato dall’Università di Roma “La Sapienza” con il contributo della Fondazione Roma. Il progetto ha visto realizzati una serie di interventi innovativi in ambito didattico, favorendo la partecipazione attiva degli studenti al processo di apprendimento.