3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing

Energy harvesting and sensing triboelectric module based on 3D-printed materials have been developed. Rapid prototyping, 3D-printing method is used to prepare sheets of triboelectric materials and simple film casting technique is employed to deposit electrically conductive carbon based elastomeric c...

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Main Authors: Rubaiyet I. Haque, Pierre-André Farine, Danick Briand
Format: Article
Language:English
Published: MDPI AG 2017-08-01
Series:Proceedings
Subjects:
Online Access:https://www.mdpi.com/2504-3900/1/4/580
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spelling doaj-3cad4306c671466a9235424c28e555942020-11-24T23:14:33ZengMDPI AGProceedings2504-39002017-08-011458010.3390/proceedings1040580proceedings10405803D Printed Materials Based Triboelectric Device for Energy Harvesting and SensingRubaiyet I. Haque0Pierre-André Farine1Danick Briand2Electronics and Signal Processing Laboratory, EPFL, Neuchâtel, SwitzerlandElectronics and Signal Processing Laboratory, EPFL, Neuchâtel, SwitzerlandMicrosystems for Space Technologies Laboratory, EPFL, Neuchâtel, SwitzerlandEnergy harvesting and sensing triboelectric module based on 3D-printed materials have been developed. Rapid prototyping, 3D-printing method is used to prepare sheets of triboelectric materials and simple film casting technique is employed to deposit electrically conductive carbon based elastomeric composite on these dielectrics. The device exhibits capability to detect and harvest energy from mechanical deformation. The developed 3D printed triboelectric system, under tapping condition, provides the maximum rms power of 41.2 μW for the optimum load resistance of 6.1 MΩ that corresponds to the power density of 10.6 μW/cm2. The processing set the building-block towards fully printed triboelectric devices.https://www.mdpi.com/2504-3900/1/4/580triboelectricity3D printingenergy harvestingsensing
collection DOAJ
language English
format Article
sources DOAJ
author Rubaiyet I. Haque
Pierre-André Farine
Danick Briand
spellingShingle Rubaiyet I. Haque
Pierre-André Farine
Danick Briand
3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
Proceedings
triboelectricity
3D printing
energy harvesting
sensing
author_facet Rubaiyet I. Haque
Pierre-André Farine
Danick Briand
author_sort Rubaiyet I. Haque
title 3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
title_short 3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
title_full 3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
title_fullStr 3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
title_full_unstemmed 3D Printed Materials Based Triboelectric Device for Energy Harvesting and Sensing
title_sort 3d printed materials based triboelectric device for energy harvesting and sensing
publisher MDPI AG
series Proceedings
issn 2504-3900
publishDate 2017-08-01
description Energy harvesting and sensing triboelectric module based on 3D-printed materials have been developed. Rapid prototyping, 3D-printing method is used to prepare sheets of triboelectric materials and simple film casting technique is employed to deposit electrically conductive carbon based elastomeric composite on these dielectrics. The device exhibits capability to detect and harvest energy from mechanical deformation. The developed 3D printed triboelectric system, under tapping condition, provides the maximum rms power of 41.2 μW for the optimum load resistance of 6.1 MΩ that corresponds to the power density of 10.6 μW/cm2. The processing set the building-block towards fully printed triboelectric devices.
topic triboelectricity
3D printing
energy harvesting
sensing
url https://www.mdpi.com/2504-3900/1/4/580
work_keys_str_mv AT rubaiyetihaque 3dprintedmaterialsbasedtriboelectricdeviceforenergyharvestingandsensing
AT pierreandrefarine 3dprintedmaterialsbasedtriboelectricdeviceforenergyharvestingandsensing
AT danickbriand 3dprintedmaterialsbasedtriboelectricdeviceforenergyharvestingandsensing
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