Performance of a triboelectric nanogenerator utilising coconut husk layer / Muhammad Aqmal Saparin ... [et al.]

Sapari, Muhammad Aqmal and Salleh, Hanim and Chong, Kok Hen and Amnuruddin, Siti Nur Aliah (2024) Performance of a triboelectric nanogenerator utilising coconut husk layer / Muhammad Aqmal Saparin ... [et al.]. Journal of Mechanical Engineering (JMechE), 21 (3): 8. pp. 123-143. ISSN 1823-5514 ; 2550-164X

Abstract

Triboelectric nanogenerators, known as TENGs, offer great potential as versatile energy harvesting devices. In recent years, there has been a rise in TENG designs that prioritize compatibility with sustainable biomaterials, leading to new possibilities in green technology. The novelty of this work lies in its pioneering exploration of utilizing sustainable biomaterials, particularly coconut husk, within the field of Tribo-electric nanogenerators (TENGs). This study focuses on evaluating and characterizing coconut husk as TENG material considering factors such as rotational speed, vane count, and coarseness, all of which influence the output potential of the B-TENG. The BTENG model employed in this research operates on a rotational sliding mode, featuring a biobased material layer of coconut husk, a layer of PTFE, and copper as electrodes. The B-TENG has a diameter of 100 mm with varying vane configurations (3-vane, 4-vane, and 5-vane). The sliding mode demonstrated impressive versatility, yielding output voltages spanning from 0.73 V to 4.0 V across rotational speeds of 200 RPM to 1400 RPM. Remarkably, the 5-vane fine-grained coconut husks achieved a maximum power of 121.10 mW at 10 Ohm and a power density of 3.84 mW/cm2. This research carries global significance, contributing to the advancement of energy harvesting technology. Its applications range from harnessing the motion of human bodies to rotating machineries in any industry.

Metadata

Item Type: Article
Creators:
Creators
Email / ID Num.
Sapari, Muhammad Aqmal
aqmal.saparin@uniten.edu.my
Salleh, Hanim
UNSPECIFIED
Chong, Kok Hen
UNSPECIFIED
Amnuruddin, Siti Nur Aliah
UNSPECIFIED
Subjects: T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Production of electricity by direct energy conversion
Divisions: Universiti Teknologi MARA, Shah Alam > College of Engineering
Journal or Publication Title: Journal of Mechanical Engineering (JMechE)
UiTM Journal Collections: Listed > Journal of Mechanical Engineering (JMechE)
ISSN: 1823-5514 ; 2550-164X
Volume: 21
Number: 3
Page Range: pp. 123-143
Keywords: Bio-Based Triboelectric Nanogenerator; Biomaterial; SelfPowered Sensor; Energy Harvesting
Date: September 2024
URI: https://ir.uitm.edu.my/id/eprint/101332
Edit Item
Edit Item

Download

[thumbnail of 101332.pdf] Text
101332.pdf

Download (725kB)

ID Number

101332

Indexing

Statistic

Statistic details