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Transparent and attachable ionic communicators based on self-cleanable triboelectric nanogenerators.


ABSTRACT: Human-machine interfaces have benefited from the advent of wireless sensor networks and the internet of things, but rely on wearable/attachable electronics exhibiting stretchability, biocompatibility, and transmittance. Limited by weight and volume, wearable devices should be energy efficient and even self-powered. Here, we report practical approaches for obtaining a stably self-cleanable, transparent and attachable ionic communicator based on triboelectric nanogenerators. The communicator can be easily applied on human skin due to softness and chemically anchored robust layers. It functions as a means of real-time communication between humans and machines. Surface functionalization on the communicator by (heptadecafluoro-1,1,2,2-tetrahydrodecyl)trichlorosilane improves sensitivity and makes the communicator electrically and optically stable due to the self-cleaning effect without sacrificing transmittance. This research may benefit the potential development of attachable ionics, self-powered sensor networks, and monitoring systems for biomechanical motion.

SUBMITTER: Lee Y 

PROVIDER: S-EPMC5935721 | biostudies-other | 2018 May

REPOSITORIES: biostudies-other

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Transparent and attachable ionic communicators based on self-cleanable triboelectric nanogenerators.

Lee Younghoon Y   Cha Seung Hee SH   Kim Yong-Woo YW   Choi Dukhyun D   Sun Jeong-Yun JY  

Nature communications 20180504 1


Human-machine interfaces have benefited from the advent of wireless sensor networks and the internet of things, but rely on wearable/attachable electronics exhibiting stretchability, biocompatibility, and transmittance. Limited by weight and volume, wearable devices should be energy efficient and even self-powered. Here, we report practical approaches for obtaining a stably self-cleanable, transparent and attachable ionic communicator based on triboelectric nanogenerators. The communicator can b  ...[more]

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