摩擦电效应
纳米发生器
材料科学
能量收集
碳纳米管
压电
纳米技术
光电子学
电子皮肤
电容器
电压
电气工程
功率(物理)
复合材料
工程类
物理
量子力学
作者
Alfred Mensah,Shiqin Liao,Jeremiah Amesimeku,Pengfei Lv,Yajun Chen,Qufu Wei
出处
期刊:Small
[Wiley]
日期:2023-02-03
卷期号:19 (21)
被引量:9
标识
DOI:10.1002/smll.202207384
摘要
Biomechanical and nanomechanical energy harvesting systems have gained a wealth of interest, resulting in a plethora of research into the development of biopolymeric-based devices as sustainable alternatives. Piezoelectric, triboelectric, and hybrid nanogenerator devices for electrical applications are engineered and fabricated using innovative, sustainable, facile-approach flexible composite films with high performance based on bacterial cellulose and BaTiO3 , intrinsically and structurally enhanced by Pluronic F127, a micellar cross-linker. The voltage and current outputs of the modified versions with multiwalled carbon nanotube as a conductivity enhancer and post-poling effect are 38 V and 2.8 µA cm-2 , respectively. The multiconnective devices' power density can approach 10 µW cm-2 . The rectified output power is capable of charging capacitors, driving light-emitting diode lights, powering a digital watch and interfacing with a commercial microcontroller board to operate as a piezoresistive force sensor switch as a proof of concept. Magnetoelectric studies show that the composites have the potential to be incorporated into magnetoelectric systems. The biopolymeric composites prove to be desirable candidates for multifunctional energy harvesters and electronic devices.
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