ISSN:
Ministry points: Help
Year | Points | List |
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Year 2024 | 5 | Journal not listed on ministry scored journal list 2024 |
Year | Points | List |
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2024 | 5 | Journal not listed on ministry scored journal list 2024 |
2023 | 5 | Not listed on the ministry scored journals list 2023 |
2022 | 5 | Not listed on the ministry scored journals list (2019-2022) |
2021 | 5 | Not listed on the ministry scored journals list (2019-2022) |
2020 | 5 | Not listed on the ministry scored journals list (2019-2022) |
2019 | 5 | Not listed on the ministry scored journals list (2019-2022) |
2018 | 35 | A |
2017 | 35 | A |
2016 | 35 | A |
2015 | 30 | A |
2014 | 30 | A |
2013 | 30 | A |
2012 | 30 | A |
2011 | 30 | A |
2010 | 27 | A |
Points CiteScore:
Year | Points |
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Year 2022 | 0 |
Year | Points |
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2022 | 0 |
2021 | 5.4 |
2016 | 6.7 |
2015 | 6.1 |
2014 | 5.7 |
2013 | 5.5 |
2012 | 5.8 |
2011 | 5.4 |
Impact Factor:
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Papers published in journal
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total: 4
Catalog Journals
Year 2016
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Noble metal modified TiO2 microspheres: Surface properties and photocatalytic activity under UV-vis and visible light
PublicationComposite photocatalysts that consist of TiO2and noble metal nanostructures have been considered tobe the promising and pivotal material for accessible enhancement of the efficiency in the photocatalyticprocess carried out in the aqueous and gas phases. In this work we fabricated porous TiO2microspheresthrough a hydrothermal process followed by photochemical reduction of noble metal nanoparticles atthe TiO2surface. The morphology...
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Preparation, characterization and photocatalytic activity of TiO2 microspheres decorated by bimetallic nanoparticles
PublicationComposite photocatalysts that consist of TiO2and noble metal nanostructures have been considered tobe the promising and pivotal material for accessible enhancement of the efficiency in the photocatalyticprocess carried out in the aqueous and gas phases. In this work we fabricated porous TiO2microspheresthrough a hydrothermal process followed by photochemical reduction of noble metal nanoparticles atthe TiO2surface. The morphology...
Year 2004
Year 2001
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