Catalyst free silica templated porous carbon nanoparticles from bio-waste materials

Porous Carbon Nanoparticles (PCNs) with well-developed microporosity were obtained from bio-waste oil palm leaves (OPL) using single step pyrolysis in nitrogen atmosphere at 500–600 8C in tubefurnace without any catalysis support. The key approach was using silica (SiO2) bodies of OPL as a templ...

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Main Authors: Anuj, Kumar, Gurumurthy, Hegde, Shoriya Aruni, bt Abdul Manaf, Zainab, Ngaini, K. V., Sharma
Format: Article
Language:English
Published: Royal Society of Chemistry 2014
Subjects:
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http://ir.unimas.my/15565/1/Catalyst%20free%20silica%20templated%20porous%20carbon%20nanoparticles%20from%20bio-waste%20materials%20%28abstract%29.pdf
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spelling unimas-155652017-03-15T10:07:43Z http://ir.unimas.my/15565/ Catalyst free silica templated porous carbon nanoparticles from bio-waste materials Anuj, Kumar Gurumurthy, Hegde Shoriya Aruni, bt Abdul Manaf Zainab, Ngaini K. V., Sharma GE Environmental Sciences Porous Carbon Nanoparticles (PCNs) with well-developed microporosity were obtained from bio-waste oil palm leaves (OPL) using single step pyrolysis in nitrogen atmosphere at 500–600 8C in tubefurnace without any catalysis support. The key approach was using silica (SiO2) bodies of OPL as a template in the synthesis of microporous carbon nanoparticles with very small particle sizes of 35–85 nm and pore sizes between 1.9–2 nm. Royal Society of Chemistry 2014 Article PeerReviewed text en http://ir.unimas.my/15565/1/Catalyst%20free%20silica%20templated%20porous%20carbon%20nanoparticles%20from%20bio-waste%20materials%20%28abstract%29.pdf Anuj, Kumar and Gurumurthy, Hegde and Shoriya Aruni, bt Abdul Manaf and Zainab, Ngaini and K. V., Sharma (2014) Catalyst free silica templated porous carbon nanoparticles from bio-waste materials. Chemical Communications, 50 (84). ISSN 1364-548X https://www.researchgate.net/publication/265138287_Catalyst_free_silica_templated_porous_carbon_nanoparticles_from_bio-waste_materials DOI: 10.1039/C4CC04378B
repository_type Digital Repository
institution_category Local University
institution Universiti Malaysia Sarawak
building UNIMAS Institutional Repository
collection Online Access
language English
topic GE Environmental Sciences
spellingShingle GE Environmental Sciences
Anuj, Kumar
Gurumurthy, Hegde
Shoriya Aruni, bt Abdul Manaf
Zainab, Ngaini
K. V., Sharma
Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
description Porous Carbon Nanoparticles (PCNs) with well-developed microporosity were obtained from bio-waste oil palm leaves (OPL) using single step pyrolysis in nitrogen atmosphere at 500–600 8C in tubefurnace without any catalysis support. The key approach was using silica (SiO2) bodies of OPL as a template in the synthesis of microporous carbon nanoparticles with very small particle sizes of 35–85 nm and pore sizes between 1.9–2 nm.
format Article
author Anuj, Kumar
Gurumurthy, Hegde
Shoriya Aruni, bt Abdul Manaf
Zainab, Ngaini
K. V., Sharma
author_facet Anuj, Kumar
Gurumurthy, Hegde
Shoriya Aruni, bt Abdul Manaf
Zainab, Ngaini
K. V., Sharma
author_sort Anuj, Kumar
title Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
title_short Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
title_full Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
title_fullStr Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
title_full_unstemmed Catalyst free silica templated porous carbon nanoparticles from bio-waste materials
title_sort catalyst free silica templated porous carbon nanoparticles from bio-waste materials
publisher Royal Society of Chemistry
publishDate 2014
url http://ir.unimas.my/15565/
http://ir.unimas.my/15565/
http://ir.unimas.my/15565/
http://ir.unimas.my/15565/1/Catalyst%20free%20silica%20templated%20porous%20carbon%20nanoparticles%20from%20bio-waste%20materials%20%28abstract%29.pdf
first_indexed 2018-09-06T16:23:10Z
last_indexed 2018-09-06T16:23:10Z
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