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A universal packaging substrate for mechanically stable assembly of stretchable electronics

Engineering and Technology

A universal packaging substrate for mechanically stable assembly of stretchable electronics

Y. Shao, J. Yan, et al.

Innovative stretchable electronics are now a reality thanks to groundbreaking research conducted by Yan Shao and colleagues. Their novel packaging substrate, designed to enhance the adhesion and stretchability of diverse modules even at extreme strains, paves the way for sustainable bioelectronic devices with impressive longevity.... show more
Abstract
Stretchable electronics commonly assemble multiple material modules with varied bulk moduli and surface chemistry on one packaging substrate. Preventing the strain-induced delamination between the module and the substrate has been a critical challenge. Here we develop a packaging substrate that delivers mechanically stable module/substrate interfaces for a broad range of stiff and stretchable modules with varied surface chemistries. The key design of the substrate was to introduce module-specific stretchability and universal adhesiveness by regionally tuning the bulk molecular mobility and surface molecular polarity of a near-hermetic elastic polymer matrix. The packaging substrate can customize the deformation of different modules while avoiding delamination upon stretching up to 600%. Based on this substrate, we fabricated a fully stretchable bioelectronic device that can serve as a respiration sensor or an electric generator with an in vivo lifetime of 10 weeks. This substrate could be a versatile platform for device assembly.
Publisher
Nature Communications
Published On
Jul 19, 2024
Authors
Yan Shao, Jianfeng Yan, Yinglin Zhi, Chun Li, Qingxian Li, Kaimin Wang, Rui Xia, Xinyue Xiang, Liqian Liu, Guoli Chen, Hanxue Zhang, Daohang Cai, Haochuan Wang, Xing Cheng, Canhui Yang, Fuzeng Ren, Yanhao Yu
Tags
stretchable electronics
packaging substrate
molecular mobility
bioelectronic device
adhesiveness
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