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Published on: January 16, 2019
Engineering Nanocracks Enabled Soft Micro-Wrinkles with Anomalous Strain-Resistance Effect for Underwater Electronics
Shan Li1,2, Peng Xiao1,2, Jiehan Lin1
1State Key Laboratory of Advanced Marine Materials, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.
Abstract:
Elastic wrinkle-based sensors are generally based on a typical positive gauge-factor mechanism, which inevitably suffers from issues of high power consumption and the heat of current-typed devices. Herein, an interfacial interlocked soft-hard elastomeric wrinkle is designed for stretchable negative resistance electronics. The hard CNTs/PDMS elastomeric film is cross-linked in situ on the prestretched soft elastomer surface, allowing the formation of wrinkles after strain release. The achieved wrinkle-based sensor presents the negative resistance correlation with a strain responsive range from 0% to 90% and shows a long-term electrical stability (5000 cycles) and wide operating frequency (0.01-1.0 Hz) in the water environment. As a demonstration, the sensor is further used as wearable electronics for humans and swimming robots to sensitively monitor the underwater motion behaviors. Moreover, the sensory flexible grippers are integrated to realize real-time biometric tracking and retrieval, demonstrating the potential of underwater integrated electronics with low energy consumption and accessible circuit design.

