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  5. Nanoscale Triboelectric-Effect-Enabled Energy Conversion for Sustainably Powering Portable Electronics

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Article
English
2012

Nanoscale Triboelectric-Effect-Enabled Energy Conversion for Sustainably Powering Portable Electronics

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English
2012
Nano Letters
Vol 12 (12)
DOI: 10.1021/nl303573d

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Zhong Lin Wang
Zhong Lin Wang

Beijing Institute of Technology

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Sihong Wang
Long Lin
Zhong Lin Wang

Abstract

Harvesting energy from our living environment is an effective approach for sustainable, maintenance-free, and green power source for wireless, portable, or implanted electronics. Mechanical energy scavenging based on triboelectric effect has been proven to be simple, cost-effective, and robust. However, its output is still insufficient for sustainably driving electronic devices/systems. Here, we demonstrated a rationally designed arch-shaped triboelectric nanogenerator (TENG) by utilizing the contact electrification between a polymer thin film and a metal thin foil. The working mechanism of the TENG was studied by finite element simulation. The output voltage, current density, and energy volume density reached 230 V, 15.5 μA/cm2, and 128 mW/cm3, respectively, and an energy conversion efficiency as high as 10–39% has been demonstrated. The TENG was systematically studied and demonstrated as a sustainable power source that can not only drive instantaneous operation of light-emitting diodes (LEDs) but also charge a lithium ion battery as a regulated power module for powering a wireless sensor system and a commercial cell phone, which is the first demonstration of the nanogenerator for driving personal mobile electronics, opening the chapter of impacting general people's life by nanogenerators.

How to cite this publication

Sihong Wang, Long Lin, Zhong Lin Wang (2012). Nanoscale Triboelectric-Effect-Enabled Energy Conversion for Sustainably Powering Portable Electronics. Nano Letters, 12(12), pp. 6339-6346, DOI: 10.1021/nl303573d.

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Publication Details

Type

Article

Year

2012

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

Nano Letters

DOI

10.1021/nl303573d

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