Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity

© The Royal Society of Chemistry 2016. BaCrO4microdiscs composed of multi-layered microplates were successfully synthesized by a facile oxalate-assisted precipitation method for the first time. Herein, the oxalate ion helps slow down the nucleation rate of BaCrO4crystals by complexing with the bariu...

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Main Authors: Mattawan Japa, Patchareeporn Panoy, Supanan Anuchai, Sukon Phanichphant, Piyarat Nimmanpipug, Sulawan Kaowphong, Doldet Tantraviwat, Burapat Inceesungvorn
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/55394
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-553942018-09-05T02:56:49Z Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity Mattawan Japa Patchareeporn Panoy Supanan Anuchai Sukon Phanichphant Piyarat Nimmanpipug Sulawan Kaowphong Doldet Tantraviwat Burapat Inceesungvorn Chemical Engineering Chemistry © The Royal Society of Chemistry 2016. BaCrO4microdiscs composed of multi-layered microplates were successfully synthesized by a facile oxalate-assisted precipitation method for the first time. Herein, the oxalate ion helps slow down the nucleation rate of BaCrO4crystals by complexing with the barium ion and offers control over the crystal growth and self-assembly processes via selective adsorptions probably on the facets containing elevated barium ions of the growing BaCrO4crystals. Based on the time-dependent experiments, the dissolution-recrystallization-self-assembly process has been proposed for a possible formation mechanism of the multi-layered microdiscs. A preliminary photocatalytic study suggests that the multilayered microdiscs preferentially degrade methyl orange over methylene blue and phenol due to their positive surface charge. Further investigation on the MO degradation performance under UV and visible irradiations clearly shows that the three-dimensional hierarchical structure provides better photocatalytic activity than its low-dimensional counterpart, potentially due to its higher optical absorption ability originating from the unique morphology. The synthetic method developed in this work not only provides a one-step, facile and effective control over the morphology of BaCrO4, but also offers an alternative approach toward the design of efficient photocatalytic materials. 2018-09-05T02:55:12Z 2018-09-05T02:55:12Z 2016-01-01 Journal 20462069 2-s2.0-84954043398 10.1039/c5ra23482d https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84954043398&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/55394
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Chemical Engineering
Chemistry
spellingShingle Chemical Engineering
Chemistry
Mattawan Japa
Patchareeporn Panoy
Supanan Anuchai
Sukon Phanichphant
Piyarat Nimmanpipug
Sulawan Kaowphong
Doldet Tantraviwat
Burapat Inceesungvorn
Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
description © The Royal Society of Chemistry 2016. BaCrO4microdiscs composed of multi-layered microplates were successfully synthesized by a facile oxalate-assisted precipitation method for the first time. Herein, the oxalate ion helps slow down the nucleation rate of BaCrO4crystals by complexing with the barium ion and offers control over the crystal growth and self-assembly processes via selective adsorptions probably on the facets containing elevated barium ions of the growing BaCrO4crystals. Based on the time-dependent experiments, the dissolution-recrystallization-self-assembly process has been proposed for a possible formation mechanism of the multi-layered microdiscs. A preliminary photocatalytic study suggests that the multilayered microdiscs preferentially degrade methyl orange over methylene blue and phenol due to their positive surface charge. Further investigation on the MO degradation performance under UV and visible irradiations clearly shows that the three-dimensional hierarchical structure provides better photocatalytic activity than its low-dimensional counterpart, potentially due to its higher optical absorption ability originating from the unique morphology. The synthetic method developed in this work not only provides a one-step, facile and effective control over the morphology of BaCrO4, but also offers an alternative approach toward the design of efficient photocatalytic materials.
format Journal
author Mattawan Japa
Patchareeporn Panoy
Supanan Anuchai
Sukon Phanichphant
Piyarat Nimmanpipug
Sulawan Kaowphong
Doldet Tantraviwat
Burapat Inceesungvorn
author_facet Mattawan Japa
Patchareeporn Panoy
Supanan Anuchai
Sukon Phanichphant
Piyarat Nimmanpipug
Sulawan Kaowphong
Doldet Tantraviwat
Burapat Inceesungvorn
author_sort Mattawan Japa
title Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
title_short Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
title_full Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
title_fullStr Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
title_full_unstemmed Controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
title_sort controlled synthesis of barium chromate multi-layered microdiscs and their photocatalytic activity
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84954043398&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/55394
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