Wearable and durable triboelectric nanogenerators via polyaniline coated cotton textiles as a movement sensor and self-powered system

摩擦电效应 材料科学 聚苯胺 纳米发生器 可穿戴技术 可穿戴计算机 数码产品 织物 耐久性 电极 纳米技术 复合材料 电气工程 计算机科学 聚合 工程类 聚合物 嵌入式系统 物理化学 化学 压电
作者
Bhaskar Dudem,Anki Reddy Mule,Harishkumar Reddy Patnam,Jae Su Yu
出处
期刊:Nano Energy [Elsevier]
卷期号:55: 305-315 被引量:133
标识
DOI:10.1016/j.nanoen.2018.10.074
摘要

Recently, wearable and flexible triboelectric nanogenerators (TENGs) have attracted tremendous research interest owing to their ability to harvest the energy from working environments and been further utilized to power various portable electronics. In this regard, for the first time, we report a polyaniline (PANI)-based flexible and wearable TENG in low-processing cost with superior electrical performance and durability. The cotton textile with good flexibility and intertwined micro-fibrous network is utilized as a scaffold to deposit PANI by a facile, cost-effective and low-temperature in-situ polymerization method. Moreover, the fibrous textured cotton textile can also offer high surface roughness, which enhances the output performance of TENG. Herein, this PANI coated worn-out cotton textile ([email protected]) is employed as a positive triboelectric material and electrode to design a TENG. The [email protected] produced at the deposition time of 20 h is realized as an optimal sample to attain high output performance. The electrical stability and mechanical durability of [email protected] TENG (PW-TENG) are also examined under long-term cyclic compression operations and various mechanical deformation cycles. Furthermore, the [email protected] has a potency in constructing vertical contact-separation dual-electrode mode TENG as well as it also serves as a single-electrode mode. So, the electrical output performance of single-electrode mode PW-TENG is also analyzed while it makes a contact with various materials available in our daily life. Finally, to demonstrate the practical applications of PW-TENG, the generated power is used to drive various portable electronics for wearable electronic applications.
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