Tailoring Bandgap and Photocatalytic Performance of Designed Zinc Oxide Platelets by Cobalt Doping

Author:

Alkan Bulent1ORCID,Sukru Ates Ozan2ORCID,Tumerkan Kesim Mehmet3ORCID,Suvaci Ender23ORCID

Affiliation:

1. Department of Metallurgy and Materials Engineering Hitit University 19030 Çorum Turkey

2. Department of Materials Science and Engineering Eskişehir Technical University 26555 Eskişehir Turkey

3. Entekno Industrial, Technological and Nano Materials Corporation 26470 Eskişehir Turkey

Abstract

AbstractPlatelet‐shaped zinc oxide (ZnO) particles exhibit certain advantages compared to conventional micron and nano forms. Their superior surface coverage and excellent optical properties make these particles very attractive as UV filters in cosmetics and personal care applications. Although ZnO is non‐toxic, it exhibits photocatalytic activity (PCA), which increases when the size of particles approaches the nanoscale. High PCA of mineral/inorganic filters is not desired in cosmetics and personal care applications. Therefore, it is essential to develop strategies to reduce PCA of such materials under UV exposure. Accordingly, the research objective of this study is to develop an understanding of the effects of Co‐doping on the optoelectronic and crystal structure of platelet shaped ZnO particles with Zn1‐xMxO stoichiometry (x=0‐4 wt % cobalt). XRD‐based Rietveld refinement and WD‐XRF reveal that Co was successfully doped into the ZnO lattice. SEM and particle size analyses confirmed that the shape and size of the designed ZnO platelets did not change significantly after doping. ~85 % reduction in PCA has was achieved by 3 wt % Co doping which was attributed to reduced OH and O2 free radical concentration. These results clearly show that Co‐doping can be used to effectively tailor the bandgap and optical properties of the designed ZnO particles.

Funder

Eskişehir Teknik Üniversitesi

Publisher

Wiley

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