Highly stretchable and shape-controllable three-dimensional antenna fabricated by “Cut-Transfer-Release” method
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/srep42227.pdf
Reference32 articles.
1. Xu, L. Z. et al. Materials and Fractal Designs for 3D Multifunctional Integumentary Membranes with Capabilities in Cardiac Electrotherapy. Advanced Materials 27, 1731–1737 (2015).
2. Lee, C. H. et al. Soft Core/Shell Packages for Stretchable Electronics. Advanced Functional Materials 25, 3698–3704 (2015).
3. Jeong, J. W. et al. Capacitive Epidermal Electronics for Electrically Safe, Long-Term Electrophysiological Measurements. Advanced Healthcare Materials 3, 642–648 (2014).
4. Park, G. et al. Immunologic and Tissue Biocompatibility of Flexible/Stretchable Electronics and Optoelectronics. Advanced Healthcare Materials 3, 515–525 (2014).
5. Zhang, Y. et al. Theoretical and Experimental Studies of Epidermal Heat Flux Sensors for Measurements of Core Body Temperature. Advanced Healthcare Materials 5, 119–127 (2016).
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