Uncovering the Potential of Yttrium Doped Zinc Oxide Nanoparticles as an Efficient Catalyst for Photodegradation of Recalcitrant Pollutant and a Contributor Antibacterial Property

Author:

Othman Mohd Hafiz Dzarfan,Peechmani Prakash,Makhtar Siti Nurfatin Nadhirah Mohd,Mansur Sumarni,Kamaludin Roziana,Puteh Mohd Hafiz,Wong Keng Yinn,Kurniawan Tonni Agustiono,A Rahman Mukhlis,Jaafar Juhana,Ismail Ahmad Fauzi

Publisher

Elsevier BV

Reference105 articles.

1. Mechanism and toxicity evaluation of catalytic ozonation over Cu / Ce -Al 2 O 3 system aiming at degradation of humic acid in real wastewater;X Tang;Sci Rep,2021

2. Iron-doped zinc oxide for photocatalyzed degradation of humic acid from municipal wastewater;M Mohsin;Appl Mater Today,2021

3. TiO2 assisted photocatalysts for degradation of emerging organic pollutants in water and wastewater;H K Paumo;J Mol Liq,2021

4. Bisphenol A, S or F mother's dermal impregnation impairs offspring immune responses in a dose and sex-specific manner in mice;Y Malais�;Sci Rep,2021

5. Cardiac toxicity from bisphenol A exposure in human-induced pluripotent stem cell-derived cardiomyocytes;S A Hyun;Toxicol Appl Pharmacol,2021

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