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MICRO-NANO DEVICES AND MATERIALS FOR ELECTRICAL ELECTROMAGNETIC APPLICATIONS AND FUNDAMENTS
The lectures will be held on-line via Zoom Meeting every Tuesday from 2pm to 4pm, as scheduled.
Meeting ID: 267 572 6490
Passcode: xuYbU2
All the informations are available at Google Classroom page:
Receiving hours
su appuntamento tramite mail.
Generalmente lunedì mattina dalle 9 alle 10 presso il mio studio, Via delle Sette Sale12B, 00184 Roma
Curriculum
PERSONAL INFORMATION
Alessandro Giuseppe D'Aloia
WORK EXPERIENCE
from 01/08/2024 – till now Associate Professor
Sapienza University of Rome, DIAEE Department, 12B, via delle Sette Sale, Rome, 00184, Italy
from 01/07/2018 – till 31/07/2024 Assistant Professor
Sapienza University of Rome, DIAEE Department, 12B, via delle Sette Sale, Rome, 00184, Italy
Main activities:
▪ Research, main research topic “Development and characterization of graphene-based nanocomposites for engineering applications”
▪ Supervision of PhD and Master Thesis students during their research work,
▪ Teaching of Electrotechnics and Micro-nano Devices and Materials for electrical and electromagnetic applications to Bachelor and Master Students of Electrical and Aerospace Engineering
Main achievements:
▪ One international patent: “GNP-based polymeric nanocomposites for reducing electromagnetic interferences”, US Patent 9,717,170
▪ More than twenty journal papers published in international peer-reviewed scientific journals, three book chapters on scientific handbooks about graphene science and nanoelectronic devices and twenty papers in proceedings of IEEE international conferences and symposia
▪ More than thirty scientific presentations in technical sessions of international IEEE conferences, including workshops, tutorial, invited and plenary sessions.
EDUCATION AND TRAINING
17/06/2014 PhD in Electrical Engineering [ Excellent ]
Sapienza University of Rome, Engineering Faculty, 18, via Eudossiana, Roma, 00184, Italy
▪ Thesis: “Carbon-Nanotube Interconnects and Graphene Based Nanocomposites for Electromagnetic Shielding and Strain Sensors”, Advisor: Prof. M.S. Sarto
25/02/2009 Master’s Degree in Electrical Engineering [ 110/110 summa cum laude ]
Sapienza University of Rome, Engineering Faculty, 18, via Eudossiana, Roma, 00184, Italy
▪ Thesis: “Electromagnetic Field Generated by Carbon Nanotubes Bundles”
(within EU Catherine Research Project activities)
24/02/2006 Bachelor’s Degree in Materials Engineering [ 110/110 summa cum laude ]
University of Perugia, Engineering Faculty, 4, Strada Pentima Bassa, Terni, 05100, Italy
▪ Thesis: “Vector Hysteresis of Magnetic Materials”
PERSONAL SKILLS
Mother tongue Italian
Other languages: English, French
MAIN AWARDS
▪ 2015 Best PhD Thesis Award from Sapienza University Publishing (July 2015)
▪ Certification of attendance in Alma Graduate School summer course for the fifty best italian graduates (October 2007)
▪ Best Student Paper Award, 1st place, at 2011 IEEE International Symposium on EMC, Long Beach (CA), USA, August 2011
▪ Finalist of Best Paper Award, at 2017 IEEE International Conference on Nanotechnology, Pittsburgh (PA), USA, July 2017
ADDITIONAL INFORMATION
Selected Publications
▪ Farooq, Umar, et al. "Graphene-Based Flexible Thermal Sensor and Thermopile Approach for Enhancing Thermometry Sensitivity in Next-Generation Wearables." IEEE Sensors Letters (2024).
▪ Ali, B. et al. "Wearable graphene-based fabric electrodes for enhanced and long-term biosignal detection." Sensors and Actuators Reports 5 (2023): 100161;
▪ Bidsorkhi, H. C. et al. "Wearable Graphene-based smart face mask for Real-Time human respiration monitoring." Materials & Design 230 (2023): 111970;
▪ Ali, B. et al. "Graphene-based Smart Insole Sensor for Pedobarometry and Gait Analysis." IEEE Sensors Letters (2023);
▪ Bidsorkhi, H. C. et al. "Waterproof graphene-pvdf wearable strain sensors for movement detection in smart gloves." Sensors 21.16 (2021): 5277.
Main Research Projects
▪ “Digital Twins construction: Sensors and wearable devices”, thematic line of the Research Project “Wearable technologies, sensors and biomarkers for care through Digital Twin approaches”– financed by Piano Nazionale Complementare Salute - Spoke 3
▪ “Development of nanostructured multifunctional coatings for EMI (Electromagnetic Interference) suppression and sensing applications”, thematic line of the Research Project “Innovative Materials and Lightweighting” – financed by PNRR - CN4.
▪ “Development of flexible wearable graphene based textile dry electrodes for multifunctional motion artifact-free sensing and point-of-care treatment” – financed by Progetti Grandi d’Ateneo – Role PI
Lessons
| Lesson code | Lesson | Year | Semester | Language | Course | Course code | Curriculum |
|---|---|---|---|---|---|---|---|
| 10628757 | ELEMENTI DI ELETTROTECNICA MISURE ELETTRICHE E SENSORI | 1st | 2nd | ITA | Technological and Digital Innovation Engineering applied to the Built Environment (Campus Rieti) | 33481 | Curriculum unico |
| 10603353 | SENSORI E TECNOLOGIE PER IL MONITORAGGIO DISTRIBUITO - SENSORI PER IL MONITORAGGIO | 2nd | 2nd | ITA | Technological and Digital Innovation Engineering applied to the Built Environment (Campus Rieti) | 33481 | Curriculum unico |
| 10603353 | SENSORI E TECNOLOGIE PER IL MONITORAGGIO DISTRIBUITO - SENSORI PER IL MONITORAGGIO | 3rd | 1st | ITA | Technological and Digital Innovation Engineering applied to the Built Environment (Campus Rieti) | 33481 | Curriculum unico |
| 10596076 | MICRO-NANO DEVICES AND MATERIALS FOR ELECTRICAL ELECTROMAGNETIC APPLICATIONS AND FUNDAMENTALS - MICRO-NANO DEVICES AND MATERIALS FOR ELECTRICAL ELECTROMAGNETIC APPLICATIONS | 2nd | 1st | ENG | Nanotechnology Engineering | 33496 | Nanotechnology Engineering |