References

  1. A. Lee, J.W. Elam, S.B. Darling, Membrane materials for water purification: design, development, and application, Environ. Sci. Water Res., 2 (2016) 17–42.
  2. Q. Chen, Y.Y. Liu, C. Xue, Y.L. Yang, W.M. Zhang, Energy selfsufficient desalination stack as a potential fresh water supply on small islands, Desalination, 359 (2015) 52–58.
  3. M. Padaki, R.S. Murali, M.S. Abdullah, N. Misdan, A. Moslehyani, M.A. Kassim, N. Hilal, A.F. Ismail, Membrane technology enhancement in oil-water separation, a review, Desalination, 357 (2015) 197–207.
  4. W.X. Zeng, Y. Bian, S. Cao, Y.J. Ma, Y. Liu, A.Q. Zhu, P.F. Tan, J. Pan, Phase transformation synthesis of strontium tantalum oxynitride-based heterojunction for improved visible lightdriven hydrogen evolution, ACS Appl. Mater. Interfaces, 10 (2018) 21328–21334.
  5. Y.J. Ma, J. Jiang, A.Q. Zhu, P.F. Tan, Y. Bian, W.X. Zeng, H. Cui, J. Pan, Enhanced visible-light photocatalytic degradation by Mn3O4/CeO2 heterojunction: a Z-scheme system photocatalyst, Inorg. Chem. Front., 5 (2018) 2579–2586.
  6. J. Lu, Y. Qin, Q. Zhang, C. Yu, Y. Wu, Y. Yan, H. Fan, M. Meng, C. Li, Antibacterial, high-flux and 3D porous molecularly imprinted nanocomposite sponge membranes for cross-flow filtration of emodin from analogues, Chem. Eng. J., 360 (2019) 483–493.
  7. J. Lu, Y. Wu, X. Lin, J. Gao, H. Dong, L. Chen, Y. Qin, L. Wang, Y. Yan, Anti-fouling and thermosensitive ion-imprinted nanocomposite membranes based on graphene oxide and silicon dioxide for selectively separating europium ions, J. Hazard. Mater., 353 (2018) 244–253.
  8. F. Dong, Z. Wang, Y.J. Sun, W.K. Ho, H.D. Zhang, Engineering the nanoarchitecture and texture of polymeric carbon nitride semiconductor for enhanced visible light photocatalytic activity, J. Colloid Interface Sci., 401 (2013) 70–79.
  9. X. Zhang, X. Xie, H. Wang, J. Zhang, B. Pan, Y. Xie, Enhanced photo responsive ultrathin graphitic-phase C3N4 nanosheets for bioimaging, J. Am. Chem. Soc., 135 (2012) 18–21.
  10. S.M.R. Niya, M. Hoorfar, Study of proton exchange membrane fuel cells using electrochemical impedance spectroscopy technique – a review, J. Power Sources, 240 (2013) 282–293.
  11. C. Yin, S. Wang, Y.J. Zhang, Z. Chen, Z.D. Lin, P. Fu, L. Yao. Correlation between the pore resistance and water flux of the cellulose acetate membrane, Environ. Sci. Water Res., 3 (2017) 1037–1041.
  12. Z.J. Zhao, S.Y. Shi, H.B. Cao, Y.P. Li. Electrochemical impedance spectroscopy and surface properties characterization of anion exchange membrane fouled by sodium dodecyl sulfate, J. Membr. Sci., 530 (2017) 220–231.
  13. T.C. Chilcott, A. Antony, G. Leslie, In situ electrical impedance characterization of fouling by calcium agents in reverse osmosis membrane systems using Maxwell Wagner and hydrodynamic models, Desalination, 403 (2017) 64–79.
  14. J.Y. Liu, Z. Chen, L. Yao, J.J. Li, J.S. Zhang, Q.M. Fu, C.Q. He, P.F. Fang, Correlation between the ion permeation and free volume property in ethyl cellulose film during the acid treatment, Mater. Chem. Front., 3 (2019) 1518–1522.
  15. Q. Huang, Q.Z. Luo, Z. Chen, L. Yao, P. Fu, Z.D. Lin, The effect of electrolyte concentration on electrochemical impedance for evaluating polysulfone membrane, Environ. Sci. Water Res., 4 (2018) 1145–1151.
  16. H.M. Wang, S.B. Naghadeh, C.H. Li, V.L. Cherrette, P.F. Fang, K. Xu, J.Z. Zhang, Enhanced photoelectrochemical and photocatalytic properties of CdS nanowires decorated with Ni3S2 nanoparticles under visible light irradiation, J. Electrochem. Soc., 166 (2019) H3146–H3153.
  17. H.M. Wang, C.H. Li, P.F. Fang, Z.L. Zhang, J.Z. Zhang, Synthesis, properties, and optoelectronic applications of twodimensional MoS2 and MoS2-based heterostructures, Chem. Soc. Rev., 47 (2018) 6101–6127.
  18. Y. Jing, B.P. Chaplin, Electrochemical impedance spectroscopy study of membrane fouling characterization at a conductive sub stoichiometric TiO2 reactive electrochemical membrane: transmission line model development, J. Membr. Sci., 511 (2016) 238–249.
  19. F.W. Liu, M.X. Yin, B.Y. Xiong, F. Zheng, W.F. Mao, Z. Chen, C.Q. He, X.P. Zhao, P.F. Fang, Evolution of microstructure of epoxy coating during UV degradation process studied by slow positron annihilation spectroscopy and electrochemical impedance spectroscopy, Electrochim. Acta, 133 (2014) 283–293.
  20. Y.J. Zhang, Z. Chen, L. Yao, X Wang, P. Fu, Z.D. Lin, The graphene oxide membrane immersing in the aqueous solution studied by electrochemical impedance spectroscopy, Mater. Res. Express, 5 (2018) 045606.
  21. J.Y. Liu, Z. Chen, L. Yao, S.G. Wang, L. Huang, C.J. Dong, L.H. Niu, The 2D platelet confinement effect on the membrane hole structure probed by electrochemical impedance spectroscopy, Electrochem. Commun., 106 (2019) 106517.
  22. J. Liu, T. Zhang, Z. Wang, G. Dawson, W. Chen, Simple pyrolysis of urea into graphitic carbon nitride with recyclable adsorption and photocatalytic activity, J. Mater. Chem., 21 (2011) 14398–14401.
  23. B. Li, M. Meng, Y. Cui, Y. Wu, Y. Zhang, H. Dong, Z. Zhu, Y. Feng, C. Wu, Changing conventional blending photocatalytic membranes (BPMs): focus on improving photocatalytic performance of Fe3O4/g-C3N4/PVDF membranes through magnetically induced freezing casting method, Chem. Eng. J., 365 (2019) 405–414.
  24. H. Che, L. Liu, G. Che, H. Dong, C. Liu, C. Li, Control of energy band, layer structure and vacancy defect of graphitic carbon nitride by intercalated hydrogen bond effect of NO3 toward improving photo catalytic performance, Chem. Eng. J., 357 (2019) 209–219.
  25. W.Q. Zhou, Z. Chen, Q.M. Fu, Y. Zhang, L. Yao, H.J. Zhang, Evaluating the pore structures of polysulfone membranes by positron 3γ-annihilation probability and electrochemical impedance spectroscopy, JOM, 70 (2018) 1920–1923.
  26. K.V. Kumar, K. Porkodi, F. Rocha, Langmuir–Hinshelwood kinetics–a theoretical study, Catal. Commun., 9 (2008) 82–84.
  27. J. Wang, L. Tang, G.M. Zeng, Y.C. Deng, Y. Liu, L. Wang, Y. Zhou, Z. Guo, J.J. Wang, C. Zhang, Atomic scale g-C3N4/Bi2WO6 2D/2D heterojunction with enhanced photocatalytic degradation of ibuprofen under visible light irradiation, Appl. Catal., B, 209 (2017) 285–294.
  28. L. Tang, C.Y. Feng, Y.C. Deng, G.M. Zeng, J.J. Wang, Y. Liu, H.P. Feng, J.J. Wang, Enhanced photocatalytic activity of ternary Ag/g-C3N4/NaTaO3 photocatalysts under wide spectrum light radiation: the high potential band protection mechanism, Appl. Catal., B., 230 (2018) 102–114.
  29. Z.T. Liu, Y. Gao, J. Dong, M.L. Yang, J. Wen, M. Liu, B. Zhang, C. Fang, Y. Zhang, H. Ma, X. Gao, W. Chen, M. Shao, Chlorinated wide bandgap donor polymer enabling annealing free nonfullerene solar cells with the efficiency of 11.5%, J. Phys. Chem. Lett., 9 (2018) 6955–6962.
  30. Y.C. Deng, L. Tang, C. Feng, G.M. Zeng, J. Wang, Y. Zhou, Y. Liu, B. Peng, H.P. Feng, Construction of plasmonic Ag modified phosphorous-doped ultrathin g-C3N4 nanosheets/BiVO4 photocatalyst with enhanced visible-near-infrared response ability for ciprofloxacin degradation, J. Hazard. Mater., 344 (2018) 758–769.