Enhanced Visible Light Photocatalytic Activity of ZnO Nanowires Doped with Mn2+ and Co2+ Ions

Wei Li, Guojing Wang, Chienhua Chen, Jiecui Liao, Zhengcao Li

Nanomaterials · 2017 · 178 citations · 33 references

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Abstract

In this research, ZnO nanowires doped with Mn<sup>2+</sup> and Co<sup>2+</sup> ions were synthesized through a facile and inexpensive hydrothermal approach, in which Mn<sup>2+</sup> and Co<sup>2+</sup> ions successfully substituted Zn<sup>2+</sup> in the ZnO crystal lattice without changing the morphology and crystalline structure of ZnO. The atomic percentages of Mn and Co were 6.29% and 1.68%, respectively, in the doped ZnO nanowires. The photocatalytic results showed that Mn-doped and Co-doped ZnO nanowires both exhibited higher photocatalytic activities than undoped ZnO nanowires. Among the doped ZnO nanowires, Co-doped ZnO, which owns a twice active visible-light photocatalytic performance compared to pure ZnO, is considered a more efficient photocatalyst material. The enhancement of its photocatalytic performance originates from the doped metal ions, which enhance the light absorption ability and inhibit the recombination of photo-generated electron-hole pairs as well. The effect of the doped ion types on the morphology, crystal lattice and other properties of ZnO was also investigated.

References

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