Electrical characterization of three-dimensional graphene infused polymers

In recent years, three-dimensional graphene materials have been emerging in the spotlight for its potential for multiple applications. This is due to the material possessing excellent electrical conductivity, thermal conductivity, biological inertness and mechanical stability. One of such potential...

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Main Author: Ho, Roderick Zhan Feng
Other Authors: Teo Hang Tong Edwin
Format: Final Year Project
Language:English
Published: 2017
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Online Access:http://hdl.handle.net/10356/71013
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-710132023-07-07T16:34:47Z Electrical characterization of three-dimensional graphene infused polymers Ho, Roderick Zhan Feng Teo Hang Tong Edwin School of Electrical and Electronic Engineering DRNTU::Engineering::Materials::Microelectronics and semiconductor materials::Nanoelectronics and interconnects In recent years, three-dimensional graphene materials have been emerging in the spotlight for its potential for multiple applications. This is due to the material possessing excellent electrical conductivity, thermal conductivity, biological inertness and mechanical stability. One of such potential applications is its usage as a tactile sensor. In the field of robotics, tactile sensors play a crucial role in the interactions between robot and the environment. A tactile sensor helps to gauge and measure the amount of force applied to the robot by an object or the environment and vice versa. This capability is not possible through the means of visual sensors alone. In this two-part project, the excellent electrical conductivity of the three-dimensional graphene foam is being used to determine the amount of stress or strain that is applied to the tactile sensor. This is done so by studying the electrical characteristics of a stretchable tactile sensor. For the part in this report, the focus will be on the placed on the fabrication of the tactile sensor. The tactile sensor used for experimentation in this project is put together using graphene foam infused with poly(dimethyl siloxane). The graphene foam is fabricated using a chemical vapour deposition technique with Nickel as its base. Multiple variations of the fabrication method will be experimented on to find the optimal production procedure. One variation example is the type of connection method in which the rectangular electrical contact with lesser surface area is compared to the ring-shaped electrical contact which has larger surface area. Although larger surface area theoretically provides higher electrical conductivity, it reduces the durability of the sensor. Thus, a balance will be determined in the experimentations. The different samples produced will be tested in terms of flexibility and stretchability along with durability to determine the best working combination. Bachelor of Engineering 2017-05-12T07:43:17Z 2017-05-12T07:43:17Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/71013 en Nanyang Technological University 41 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials::Microelectronics and semiconductor materials::Nanoelectronics and interconnects
spellingShingle DRNTU::Engineering::Materials::Microelectronics and semiconductor materials::Nanoelectronics and interconnects
Ho, Roderick Zhan Feng
Electrical characterization of three-dimensional graphene infused polymers
description In recent years, three-dimensional graphene materials have been emerging in the spotlight for its potential for multiple applications. This is due to the material possessing excellent electrical conductivity, thermal conductivity, biological inertness and mechanical stability. One of such potential applications is its usage as a tactile sensor. In the field of robotics, tactile sensors play a crucial role in the interactions between robot and the environment. A tactile sensor helps to gauge and measure the amount of force applied to the robot by an object or the environment and vice versa. This capability is not possible through the means of visual sensors alone. In this two-part project, the excellent electrical conductivity of the three-dimensional graphene foam is being used to determine the amount of stress or strain that is applied to the tactile sensor. This is done so by studying the electrical characteristics of a stretchable tactile sensor. For the part in this report, the focus will be on the placed on the fabrication of the tactile sensor. The tactile sensor used for experimentation in this project is put together using graphene foam infused with poly(dimethyl siloxane). The graphene foam is fabricated using a chemical vapour deposition technique with Nickel as its base. Multiple variations of the fabrication method will be experimented on to find the optimal production procedure. One variation example is the type of connection method in which the rectangular electrical contact with lesser surface area is compared to the ring-shaped electrical contact which has larger surface area. Although larger surface area theoretically provides higher electrical conductivity, it reduces the durability of the sensor. Thus, a balance will be determined in the experimentations. The different samples produced will be tested in terms of flexibility and stretchability along with durability to determine the best working combination.
author2 Teo Hang Tong Edwin
author_facet Teo Hang Tong Edwin
Ho, Roderick Zhan Feng
format Final Year Project
author Ho, Roderick Zhan Feng
author_sort Ho, Roderick Zhan Feng
title Electrical characterization of three-dimensional graphene infused polymers
title_short Electrical characterization of three-dimensional graphene infused polymers
title_full Electrical characterization of three-dimensional graphene infused polymers
title_fullStr Electrical characterization of three-dimensional graphene infused polymers
title_full_unstemmed Electrical characterization of three-dimensional graphene infused polymers
title_sort electrical characterization of three-dimensional graphene infused polymers
publishDate 2017
url http://hdl.handle.net/10356/71013
_version_ 1772828582542835712