AI Article Synopsis

  • Commercially available biomedical wearable sensors face challenges with size, weight, and power supply, hindering their miniaturization.
  • Flexible and biocompatible nanostructured photonic devices have been developed to measure tensile strain without the need for power, offering an optical readout.
  • These devices utilize hierarchical silver nanostructures that shift light reflection when tensile forces are applied, allowing for real-time strain measurement and potential applications in biomedical sensing.

Article Abstract

Commercially available biomedical wearable sensors to measure tensile force/strain still struggle with miniaturization in terms of weight, size, and conformability. Flexible and epidermal electronic devices have been utilized in these applications to overcome these issues. However, current sensors still require a power supply and some form of powered data transfer, which present challenges to miniaturization and to applications. Here, we report on the development of flexible, passive (thus zero power consumption), and biocompatible nanostructured photonic devices that can measure tensile strain in real time by providing an optical readout instead of an electronic readout. Hierarchical silver (Ag) nanostructures in various thicknesses of 20-60 nm were fabricated and embedded on a stretchable substrate using e-beam lithography and a low-temperature dewetting process. The hierarchical Ag nanostructures offer more design flexibility through a two-level design approach. A tensional force applied in one lateral ( or ) direction of the stretchable substrate causes a Poisson contraction in the other, and as a result, a shift in the reflected light of the nanostructures. A clear blue shift of more than 100 nm in peak reflectance in the visible spectrum was observed in the reflected color, making the devices applicable in a variety of biomedical photonic sensing applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8143550PMC
http://dx.doi.org/10.3390/mi12050476DOI Listing

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