Toward all flexible sensing systems for next-generation wearables
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Autori:
Fengyuan Liu, Leandro Lorenzelli
Pubblicato in:
Wearable Electronics, Numero 1, 2025, ISSN 2950-2357
Editore:
Elsevier BV
DOI:
10.1016/J.WEES.2024.07.003
From Printed Devices to Vertically Stacked, 3D Flexible Hybrid Systems
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Autori:
Fengyuan Liu, Adamos Christou, Abhishek Singh Dahiya, Ravinder Dahiya
Pubblicato in:
Advanced Materials, Numero 37, 2025, ISSN 0935-9648
Editore:
Wiley
DOI:
10.1002/ADMA.202411151
Stochastic Nature of Large‐Scale Contact Printed ZnO Nanowires Based Transistors
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Autori:
Fengyuan Liu, Adamos Christou, Radu Chirila, Luca De Pamphilis, Ravinder Dahiya
Pubblicato in:
Advanced Functional Materials, Numero 35, 2025, ISSN 1616-301X
Editore:
Wiley
DOI:
10.1002/ADFM.202412299
Collective Optimization of Synthesis and Printing for Improved Performance of ZnO Nanowires Based Large-Area Printed Sensors
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Autori:
Fengyuan Liu, Dhayalan Shakthivel, Adamos Christou, Leandro Lorenzelli, Ravinder Dahiya
Pubblicato in:
IEEE Sensors Letters, Numero 9, 2025, ISSN 2475-1472
Editore:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/LSENS.2025.3555528
Cognizant and Socially Aware Robotics
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Autori:
Fengyuan Liu, Lizy Kurian John, Ravinder Dahiya
Pubblicato in:
Computer, Numero 58, 2025, ISSN 0018-9162
Editore:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/MC.2025.3581409
Contact Printed ZnO Nanowires-Based Flexible Photosensitive Devices for Large Area Smart Sensing
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Autori:
Fengyuan Liu, Adamos Christou, Dhayalan Shakthivel, Ravinder Dahiya
Pubblicato in:
IEEE Sensors Letters, Numero 8, 2024, ISSN 2475-1472
Editore:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/LSENS.2024.3397539