2018SmallOpen access

Hydrogel Electronics: Biofriendly, Stretchable, and Reusable Hydrogel Electronics as Wearable Force Sensors (Small 36/2018)

Hao Liu, Moxiao Li, Cheng Ouyang, Tian Jian Lu, Fei Li, Feng Xu

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Abstract

Based on biocompatible and stretchable hydrogels, Fei Li, Feng Xu, and co-workers propose a simple paradigm to prototype stretchable electronics with an embedded 3D helical conductive layout in article number 1801711. The 3D layout promises enhanced stretchability and robustness compared to traditional 1D and 2D designs. The hydrogel electronics can be directly incorporated onto the human body and perform as wearable pressure and strain sensors in a human-friendly manner.

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What this paper is about

Based on biocompatible and stretchable hydrogels, Fei Li, Feng Xu, and co-workers propose a simple paradigm to prototype stretchable electronics with an embedded 3D helical conductive layout in article number 1801711. The 3D layout promises enhanced stretchability and robustness compared to traditional 1D and 2D designs. The hydrogel electronics can be directly incorporated onto the human body and perform as wearable pressure and strain sensors in a human-friendly manner.

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Available abstract

Based on biocompatible and stretchable hydrogels, Fei Li, Feng Xu, and co-workers propose a simple paradigm to prototype stretchable electronics with an embedded 3D helical conductive layout in article number 1801711. The 3D layout promises enhanced stretchability and robustness compared to traditional 1D and 2D designs. The hydrogel electronics can be directly incorporated onto the human body and perform as wearable pressure and strain sensors in a human-friendly manner.

Key concepts: Wearable computer, Self-healing hydrogels, Wearable technology, Electronics, Stretchable electronics, Materials science, Biocompatible material, Nanotechnology

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Hydrogel Electronics: Biofriendly, Stretchable, and Reusable Hydrogel Electronics as Wearable Force Sensors (Small 36/2018) — Research Paper | ScholarLens