References

  1. K.M. Lee, C.W. Lai, K.S. Ngai, J.C. Juan, Recent developments of zinc oxide based photocatalyst in water treatment technology: a review, Water Res., 88 (2016) 428–448.
  2. J.Y. Xiong, Y.X. Gan, J.X. Zhu, W. Li, C. Gao, Y. Wei, G. Cheng, Z. Li, S.X. Dou, Insights into the structure-induced catalysis dependence of simply engineered one-dimensional zinc oxide nanocrystals towards photocatalytic water purification, Inorg. Chem. Front., 4 (2017) 2075–2087.
  3. S. Jayswal, R.S. Moirangthem, Construction of a solar spectrum active SnS/ZnO p–n heterojunction as a highly efficient photocatalyst: the effect of the sensitization process on its performance, New J. Chem., 42 (2018) 13689–13701.
  4. B. Xue, Y.Q. Zou, Uniform distribution of ZnO nanoparticles on the surface of graphene and its enhanced photocatalytic performance, Appl. Surf. Sci., 440 (2018) 1123–1129.
  5. G.M. Neelgund, A. Oki, Photothermal effect: an important aspect for the enhancement of photocatalytic activity under illumination by NIR radiation, Mater. Chem. Front., 2 (2018) 64–75.
  6. A.N. Kadam, D.P. Bhopate, V.V. Kondalkar, S.M. Majhi, C.D. Bathula, A.-V. Tran, S.-W. Lee, Facile synthesis of Ag-ZnO core–shell nanostructures with enhanced photocatalytic activity, J. Ind. Eng. Chem., 61 (2018) 78–86.
  7. F.X. Wang, L. Liang, L. Shi, M.S. Liu, J.M. Sun, CO2-assisted synthesis of mesoporous carbon/C-doped ZnO composites for enhanced photocatalytic performance under visible light, Dalton Trans., 43 (2014) 16441–16449.
  8. Y.-H. Chiu, K.-D. Chang, Y.-J. Hsu, Plasmon-mediated charge dynamics and photoactivity enhancement for Au-decorated ZnO nanocrystals, J. Mater. Chem. A., 6 (2018) 4286–4296.
  9. D.Q. Xu, Y.W. Bai, Z.R. Li, Y. Guo, L. Bai, Enhanced photodegradation ability of solvothermally synthesized metallic copper coated ZnO microrods, Colloids Surf., A, 548 (2018) 19–26.
  10. X.W. Zheng, H.H. Liu, J.B. Zhong, S.T. Huang, J.Z. Li, D.M. Ma, Remarkably enhanced sunlight-driven photocatalytic performance of TiO2 by facilely modulating the surface property, Mater. Sci. Semicond. Process., 74 (2018) 109–115.
  11. D.M. Ma, J.B. Zhong, J.Z. Li, L. Wang, R. Peng, Enhanced photocatalytic activity of BiOCl by C70 modification and mechanism insight, Appl. Surf. Sci., 443 (2018) 497–505.
  12. Y.J. Si, H.H. Liu, N.T. Li, J.B. Zhong, J.Z. Li, D.M. Ma, SDBSassisted hydrothermal treatment of TiO2 with improved photocatalytic activity, Mater. Lett., 212 (2018) 147–150.
  13. X.L. Liu, J.F. Chen, J.Z. Li, J.B. Zhong, T. Wang, Enhanced sunlight-driven photocatalytic performance of ZnO prepared with the assistance of urea, Desal. Wat. Treat, 132 (2018) 226–234.
  14. B. Shirdel, M.A. Behnajady, Sol-gel synthesis of Ba-doped ZnO nanoparticles with enhanced photocatalytic activity in degrading Rhodamine B under UV-A irradiation, Optik, 147 (2017) 143–150.
  15. P. Wang, D.J. Wang, H.Y. Li, T.F. Xie, H.Z. Wang, Z.L. Du, A facile solution-phase synthesis of high quality water-solution anatase TiO2 nanocrystals, J. Colloid Interface Sci., 314 (2007) 337–340.
  16. Y.H. Lin, D.J. Wang, Q.D. Zhao, M. Yang, Q.L. Zhang, A study of quantum confinement properties of photogenerated charges in ZnO nanoparticles by surface photovoltage spectroscopy, J. Phys. Chem. B, 108 (2004) 3203–3206.
  17. L.Q. Ye, J.Y. Liu, Z. Jiang, T.Y. Peng, L. Zan, Facets coupling of BiOBr-g-C3N4 composite photocatalyst for enhanced visiblelight- driven photocatalytic activity, Appl. Catal., B, 142–143 (2013) 1–7.
  18. X.L. Liu, J.B. Zhong, J.Z. Li, S.T. Huang, W. Song, PEG-assisted hydrothermal synthesis of BiOCl with enhanced photocatalytic performance, Appl. Phys. A, 119 (2015) 1203–1208.
  19. D.M. Ma, J.B. Zhong, R.F. Peng, J.Z. Li, R. Duan, Effective photoinduced charge separation and photocatalytic activity of hierarchical microsphere-like C60/BiOCl, Appl. Surf. Sci., 465 (2019) 249–258.
  20. X.W. Zheng, Q. Yang, S.T. Huang, J.B. Zhong, J.Z. Li, R.H. Yang, Y.Y. Zhang, Enhanced separation efficiency of photo-induced charge pairs and sunlight-driven photocatalytic performance of TiO2 prepared with the assistance of NH4Cl, J. Sol-Gel Sci. Technol., 83 (2017) 174–180.
  21. Z. Xiang, J.B. Zhong, S.T. Huang, J.Z. Li, J.F. Chen, T. Wang, M.J. Li, P. Wang, Efficient charge separation of Ag2CO3/ZnO composites prepared by a facile precipitation approach and its dependence on loading content of Ag2CO3, Mater. Sci. Semicond. Process., 52 (2016) 62–67.