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Shape adaptable and highly resilient 3D braided triboelectric nanogenerators as e-textiles for power and sensing.


ABSTRACT: Combining traditional textiles with triboelectric nanogenerators (TENGs) gives birth to self-powered electronic textiles (e-textiles). However, there are two bottlenecks in their widespread application, low power output and poor sensing capability. Herein, by means of the three-dimensional five-directional braided (3DB) structure, a TENG-based e-textile with the features of high flexibility, shape adaptability, structural integrity, cyclic washability, and superior mechanical stability, is designed for power and sensing. Due to the spatial frame-column structure formed between the outer braided yarn and inner axial yarn, the 3DB-TENG is also endowed with high compression resilience, enhanced power output, improved pressure sensitivity, and vibrational energy harvesting ability, which can power miniature wearable electronics and respond to tiny weight variations. Furthermore, an intelligent shoe and an identity recognition carpet are demonstrated to verify its performance. This study hopes to provide a new design concept for high-performance textile-based TENGs and expand their application scope in human-machine interfacing.

SUBMITTER: Dong K 

PROVIDER: S-EPMC7280288 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Shape adaptable and highly resilient 3D braided triboelectric nanogenerators as e-textiles for power and sensing.

Dong Kai K   Peng Xiao X   An Jie J   Wang Aurelia Chi AC   Luo Jianjun J   Sun Baozhong B   Wang Jie J   Wang Zhong Lin ZL  

Nature communications 20200608 1


Combining traditional textiles with triboelectric nanogenerators (TENGs) gives birth to self-powered electronic textiles (e-textiles). However, there are two bottlenecks in their widespread application, low power output and poor sensing capability. Herein, by means of the three-dimensional five-directional braided (3DB) structure, a TENG-based e-textile with the features of high flexibility, shape adaptability, structural integrity, cyclic washability, and superior mechanical stability, is desig  ...[more]

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2024-09-05 | GSE245316 | GEO