Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA

To have an effect on the combustion properties of polylactic acid (PLA), reduced graphene oxide/zinc oxide (rGO/ZnO) complex was synthesized and incorporated into the former. The fundamental concept behind this approach is to benefit from the fire retardancy properties of both ZnO and layered rGO. T...

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Main Author: Goh, Min Hao.
Other Authors: Aravind Dasari
Format: Final Year Project
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/52654
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-526542023-03-04T15:38:20Z Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA Goh, Min Hao. Aravind Dasari School of Materials Science and Engineering DRNTU::Engineering::Materials::Functional materials To have an effect on the combustion properties of polylactic acid (PLA), reduced graphene oxide/zinc oxide (rGO/ZnO) complex was synthesized and incorporated into the former. The fundamental concept behind this approach is to benefit from the fire retardancy properties of both ZnO and layered rGO. That is, Zn-based compounds were reported to be effective catalysts for dehydrogenation (and subsequent carbonization) in some polymer systems; while layered nanoparticles were proven to greatly reduce heat and mass loss rates during combustion of a polymer nanocomposite. But combustion tests were out of scope of the present work, which is limited to synthesis and preliminary characterization of the nanofillers and composites. From the results, it was noticed that the ZnO acted as a catalyst that degraded the molecular weights of PLA matrix via transesterification reactions even during processing. This degradation significantly influenced the thermal stability of the materials. Bachelor of Engineering (Materials Engineering) 2013-05-21T08:43:36Z 2013-05-21T08:43:36Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/52654 en Nanyang Technological University 54 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::Functional materials
spellingShingle DRNTU::Engineering::Materials::Functional materials
Goh, Min Hao.
Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
description To have an effect on the combustion properties of polylactic acid (PLA), reduced graphene oxide/zinc oxide (rGO/ZnO) complex was synthesized and incorporated into the former. The fundamental concept behind this approach is to benefit from the fire retardancy properties of both ZnO and layered rGO. That is, Zn-based compounds were reported to be effective catalysts for dehydrogenation (and subsequent carbonization) in some polymer systems; while layered nanoparticles were proven to greatly reduce heat and mass loss rates during combustion of a polymer nanocomposite. But combustion tests were out of scope of the present work, which is limited to synthesis and preliminary characterization of the nanofillers and composites. From the results, it was noticed that the ZnO acted as a catalyst that degraded the molecular weights of PLA matrix via transesterification reactions even during processing. This degradation significantly influenced the thermal stability of the materials.
author2 Aravind Dasari
author_facet Aravind Dasari
Goh, Min Hao.
format Final Year Project
author Goh, Min Hao.
author_sort Goh, Min Hao.
title Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
title_short Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
title_full Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
title_fullStr Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
title_full_unstemmed Synthesis of rGO/ZnO complex and its effects on the thermal behaviour of PLA
title_sort synthesis of rgo/zno complex and its effects on the thermal behaviour of pla
publishDate 2013
url http://hdl.handle.net/10356/52654
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