4.8 Article

Wearable and self-powered sensors made by triboelectric nanogenerators assembled from antibacterial bromobutyl rubber

Journal

NANO ENERGY
Volume 82, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.nanoen.2021.105769

Keywords

Triboelectric nanogenerators; Bromobutyl rubber; Intrinsic antibacterial; Identification; Gait analysis

Funding

  1. Shi-Pei Plans -Cross Training for High Level Talents of College Students, Beijing, 2019

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This paper introduces a new type of triboelectric nanogenerator assembled from flexible materials, with stable output performance, which can be widely used in wearable medical sensors and other fields. Through the study of different film forming and surface treatment methods, the best power generating effects were obtained, proving its potential in identification and gait analysis.
Energy, information, and materials are the three main factors required for the survival and development of modern humankind, with energy being the cornerstone of all development. In recent years, self-powered devices have received widespread attention. As a new generation device, Triboelectric nanogenerators (TENGs) assembled from flexible materials possess the characteristics of flexible design, low-cost, stable output performance, etc., and can be widely used in wearable and self-powered medical detection sensors of human body. In this paper, flexible bromobutyl rubber (BIIR) and PET were used as friction materials, and assembled into arched vertical contact-separation triboelectric nanogenerators following various film formation and surface roughening treatments. The treatment and assembly methods of the friction materials were studied in order to obtain the best power generating effects. In addition, due to the biocompatibility and intrinsic antibacterial property of BIIR films, the fabricated triboelectric nanogenerator was also applied to wearable self-powered sensor equipment, proving its potential in the fields of identification and gait analysis.

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