| Literature DB >> 28198812 |
Zhuocheng Yan1, Taisong Pan1, Guang Yao1, Feiyi Liao1, Zhenlong Huang1, Hulin Zhang1, Min Gao1,2, Yin Zhang1, Yuan Lin1,2.
Abstract
Recent progresses on the Kirigami-inspired method provide a new idea to assemble three-dimensional (3D) functional structures with conventional materials by releasing the prestrained elastomeric substrates. In this paper, highly stretchable serpentine-like antenna is fabricated by a simple and quick "Cut-Transfer-Release" method for assembling stretchable 3D functional structures on an elastomeric substrate with a controlled shape. The mechanical reliability of the serpentine-like 3D stretchable antenna is evaluated by the finite element method and experiments. The antenna shows consistent radio frequency performance with center frequency at 5.6 GHz during stretching up to 200%. The 3D structure is also able to eliminate the hand effect observed commonly in the conventional antenna. This work is expected to spur the applications of novel 3D structures in the stretchable electronics.Entities:
Year: 2017 PMID: 28198812 PMCID: PMC5304148 DOI: 10.1038/srep42227
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1The fabrication process of the “Cut-Transfer-Release” method.
Figure 2The optical images and FEM strain distribution results of 3D structures during releasing the 200% prestrained substrate.
(a) the 3D Au/PI serpentine-like structure (b) the 3D Au/PI ribbon structure (scale bar: 1 mm).
Figure 3(a) The resistance change of serpentine-like antenna with different applied substrate strain after stretching to 200% for 100 times (the initial resistance R0 was measured when applied substrate strain is 200% and change value is average value of 10 samples); (b) The strain distribution derived from FEM result when the prestrained substrate is fully released; (c) Optical images of the strain concentration region before and after the substrate is stretched to 200% for 100 times (Scale bar: 100 um).
Figure 4(a) Optical image of 3D serpentine-like antenna on Ecoflex with SMA connector and FR-4 substrate attached (Scale bar: 20 mm); (b) The S11 parameters of the 3D serpentine-like antenna with different applied substrate strain; (c) The S11 parameters of the 3D serpentine-like antenna with different distances to human hand in -Z direction; (d) The S11 parameters of the 3D serpentine-like antenna with different distances to human hand in Y direction; (e) The S11 parameters of the 3D serpentine-like antenna with different distances to human hand in Z direction.