Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide

The present work deals with the development of polystyrene (PS) nanocomposites through solvent blending technique with diverse contents of modified CoAl layered double hydroxide (LDH). The prepared PS as well as PS/CoAl LDH (1–7 wt.%) nanocomposites were characterized by X-ray diffraction (XRD), t...

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Main Authors: Kelothu Suresh, R. Vinoth Kumar, G. Pugazhenthi
Format: Article
Language:English
Published: Elsevier 2016-09-01
Series:Journal of Science: Advanced Materials and Devices
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2468217916300892
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author Kelothu Suresh
R. Vinoth Kumar
G. Pugazhenthi
author_facet Kelothu Suresh
R. Vinoth Kumar
G. Pugazhenthi
author_sort Kelothu Suresh
collection DOAJ
description The present work deals with the development of polystyrene (PS) nanocomposites through solvent blending technique with diverse contents of modified CoAl layered double hydroxide (LDH). The prepared PS as well as PS/CoAl LDH (1–7 wt.%) nanocomposites were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR), rheological analysis, thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The XRD results suggested the formation of exfoliated structure, while TEM images clearly indicated the intercalated morphology of PS nanocomposites at higher loading. The presence of various functional groups in the CoAl LDH and PS/CoAl LDH nanocomposites was verified by FTIR analysis. TGA data confirmed that the thermal stability of PS composites was enhanced significantly as compared to pristine PS. While considering 15% weight loss as a reference point, it was found that the thermal degradation (Td) temperature increased up to 28.5 °C for PS nanocomposites prepared with 7 wt.% CoAl LDH loading over pristine PS. All the nanocomposite samples displayed superior glass transition temperature (Tg), in which PS nanocomposites containing 7 wt.% LDH showed about 5.5 °C higher Tg over pristine PS. In addition, the kinetics for thermal degradation of the composites was studied using Coats-Redfern method. The Criado method was ultimately used to evaluate the decomposition reaction mechanism of the nanocomposites. The complex viscosity and rheological muduli of nanocomposites were found to be higher than that of pristine PS when the frequency increased from 0.01 to 100 s−1.
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spelling doaj.art-3229b11f387044d3be6e6a2d54b811ad2022-12-21T23:42:21ZengElsevierJournal of Science: Advanced Materials and Devices2468-21792016-09-011335136110.1016/j.jsamd.2016.07.007Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxideKelothu SureshR. Vinoth KumarG. PugazhenthiThe present work deals with the development of polystyrene (PS) nanocomposites through solvent blending technique with diverse contents of modified CoAl layered double hydroxide (LDH). The prepared PS as well as PS/CoAl LDH (1–7 wt.%) nanocomposites were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR), rheological analysis, thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The XRD results suggested the formation of exfoliated structure, while TEM images clearly indicated the intercalated morphology of PS nanocomposites at higher loading. The presence of various functional groups in the CoAl LDH and PS/CoAl LDH nanocomposites was verified by FTIR analysis. TGA data confirmed that the thermal stability of PS composites was enhanced significantly as compared to pristine PS. While considering 15% weight loss as a reference point, it was found that the thermal degradation (Td) temperature increased up to 28.5 °C for PS nanocomposites prepared with 7 wt.% CoAl LDH loading over pristine PS. All the nanocomposite samples displayed superior glass transition temperature (Tg), in which PS nanocomposites containing 7 wt.% LDH showed about 5.5 °C higher Tg over pristine PS. In addition, the kinetics for thermal degradation of the composites was studied using Coats-Redfern method. The Criado method was ultimately used to evaluate the decomposition reaction mechanism of the nanocomposites. The complex viscosity and rheological muduli of nanocomposites were found to be higher than that of pristine PS when the frequency increased from 0.01 to 100 s−1.http://www.sciencedirect.com/science/article/pii/S2468217916300892PolystyreneLayered double hydroxidesNanocompositesKineticRheology
spellingShingle Kelothu Suresh
R. Vinoth Kumar
G. Pugazhenthi
Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
Journal of Science: Advanced Materials and Devices
Polystyrene
Layered double hydroxides
Nanocomposites
Kinetic
Rheology
title Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
title_full Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
title_fullStr Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
title_full_unstemmed Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
title_short Processing and characterization of polystyrene nanocomposites based on CoAl layered double hydroxide
title_sort processing and characterization of polystyrene nanocomposites based on coal layered double hydroxide
topic Polystyrene
Layered double hydroxides
Nanocomposites
Kinetic
Rheology
url http://www.sciencedirect.com/science/article/pii/S2468217916300892
work_keys_str_mv AT kelothusuresh processingandcharacterizationofpolystyrenenanocompositesbasedoncoallayereddoublehydroxide
AT rvinothkumar processingandcharacterizationofpolystyrenenanocompositesbasedoncoallayereddoublehydroxide
AT gpugazhenthi processingandcharacterizationofpolystyrenenanocompositesbasedoncoallayereddoublehydroxide