2021
DOI: 10.1038/s41928-021-00658-x
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Wireless power transfer based on novel physical concepts

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Cited by 110 publications
(44 citation statements)
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References 143 publications
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“…RISs realized through industry-standard fabrication processes have greater potential for large-scale construction, which is required for future 6G smart cities. Moreover, emerging 2D van der Waals materials using surface-plasmon polaritons provide new approaches for dynamic tunning in the THz spectrum [115][116][117][118][119][120]. Graphene plasmons demonstrate lower loss than conventional metal-based plasmonic metasurfaces [121,122].…”
Section: Discussionmentioning
confidence: 99%
“…RISs realized through industry-standard fabrication processes have greater potential for large-scale construction, which is required for future 6G smart cities. Moreover, emerging 2D van der Waals materials using surface-plasmon polaritons provide new approaches for dynamic tunning in the THz spectrum [115][116][117][118][119][120]. Graphene plasmons demonstrate lower loss than conventional metal-based plasmonic metasurfaces [121,122].…”
Section: Discussionmentioning
confidence: 99%
“…The printability of the substrates is a key issue in designing flexible antennas; different conductive materials can be printed, commonly copper, but also other ink formulations 197 . Beyond these materials, new physical effects and materials are being investigated 198 , 199 to advance the field of wireless power transfer.…”
Section: Assembling Wearable Devicesmentioning
confidence: 99%
“…Far-field techniques can cover large areas (a few square meters), but due to omnidirectionality, their power transmission efficiency is low and subject to obstructive interference (especially from the human body). Mechanisms such as coherently enhanced WPT and exceptional point WPT, as well as metamaterials and metasurfaces for WPT may offer better solutions over traditional methods. Besides electromagnetic techniques, ultrasound is also a practical method, currently a mainstream technique used for implants, due to its low attenuation by biological tissues and high safety. But because it is highly directional, small-area single-node applications are most suitable.…”
Section: Power Supplymentioning
confidence: 99%