4.8 Article

Stretchable wideband dipole antennas and rectennas for RF energy harvesting

Journal

MATERIALS TODAY PHYSICS
Volume 18, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.mtphys.2021.100377

Keywords

Stretchable wideband dipole antennas; Stretchable wideband rectennas; RF energy Harvesting; Self-powered systems; Laser-induced graphene-based electronics

Funding

  1. National Science Foundation (NSF) [ECCS-1933072]
  2. National Heart, Lung, And Blood Institute of the National Institutes of Health [R61HL154215]
  3. Penn State University
  4. Center for Biodevices at Penn State
  5. College of Engineering at Penn State
  6. Center for Security Research and Education at Penn State

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The ultimate application of bio-integrated, stretchable electronics relies on the crucial modules of stretchable wireless data transmission and power supplies, with the introduction of stretchable wideband antennas and rectennas robustly operating and combining received RF power over their wideband upon mechanical deformations, creating application opportunities such as self-powered systems, remote monitoring of the environment, and clean energy.
The ultimate application of bio-integrated, stretchable electronics hinges on the indispensable modules of stretchable wireless data transmission and power supplies. While radiofrequency (RF) antennas and rectennas could enable wireless communication and RF energy harvesting in the far -field, their performance deteriorates because of the frequency detuning from mechanical deformations. Here, stretchable wideband antennas and rectennas are introduced to robustly operate and combine received RF power over their wideband upon mechanical deformations. Devices with stretchable wideband antennas and rectennas create application opportunities such as self-powered systems, remote monitoring of the environment, and clean energy. A comprehensive set of manufacturing schemes, device components, and theoretical design tools for the stretchable wideband antennas and rectennas is reported. A stretchable wideband rectenna integrated with various functional sensing modules and its demonstration with enhanced effective efficiency over the state-of-the-art by 10-100 times illustrates a system-level example of this technology. (C) 2021 Elsevier Ltd. All rights reserved.

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