[1] Komaraiah D,Radha E,Sivakumar J,et al.Photoluminescence and photocatalytic activity of spin coated Ag+ doped anatase TiO2 thin films[J].Optical Materials,2020,108:110401.
[2] Gopalan A I,Lee J C,Saianand G,et al.Recent progress in the abatement of hazardous pollutants using photocatalytic TiO2-based building materials[J].Nanomaterials,2020,10(9):1854.
[3] Yadav A,Sharma P,Panda A B,et al.Photocatalytic TiO2 incorporated PVDF-co-HFP UV-cleaning mixed matrix membranes for effective removal of dyes from synthetic wastewater system via membrane distillation[J].Journal of Environmental Chemical Engineering,2021,9(5):105904.
[4] Chen D,Cheng Y,Zhou N,et al.Photocatalytic degradation of organic pollutants using TiO2-based photocatalysts:a review[J].Journal of Cleaner Production,2020,268:121725.
[5] Wang Y,Ma W,Song Y,et al.Enhanced photocatalytic performance of SrTiO3 powder induced by europium dopants[J].Journal of Rare Earths,2021,39(5):541-547.
[6] Moss B,Wang Q,Butler K T,et al.Linking in situ charge accumulation to electronic structure in doped SrTiO3 reveals design principles for hydrogen-evolving photocatalysts[J].Nature Materials,2021,20(4):511-517.
[7] Patial S,Hasija V,Raizada P,et al.Tunable photocatalytic activity of SrTiO3 for water splitting:strategies and future scenario[J].Journal of Environmental Chemical Engineering,2020,8(3):103791.
[8] Klimin S N,Tempere J,Devreese J T,et al.Superconductivity in SrTiO3:dielectric function method for non-parabolic bands[J].Journal of Superconductivity and Novel Magnetism,2019,32(9):2739-2744.
[9] Ling J,Wang K,Wang Z,et al.Enhanced piezoelectric-induced catalysis of SrTiO3 nanocrystal with well-defined facets under ultrasonic vibration[J].Ultrasonics Sonochemistry,2020,61:104819.
[10] Yoshiyama Y,Hosokawa S,Tamai K,et al.NOx Storage performance at low temperature over platinum group metal-free SrTiO3-based material[J].ACS Applied Materials & Interfaces,2021,13(25):29482-29490.
[11] Wardhana A C,Yamaguchi A,Shoji S,et al.Visible-light-driven photocatalysis via reductant-to-band charge transfer in Cr(Ⅲ) nanocluster-loaded SrTiO3 system[J].Applied Catalysis B:Environmental,2020,270:118883.
[12] Jang H J,Park S J,Yang J H,et al.Photocatalytic and photoelectrocatalytic properties of Eu(Ⅲ)-doped perovskite SrTiO3 nanoparticles with dopant level approaches[J].Materials Science in Semiconductor Processing,2021,132:105919.
[13] Ren L,Yi X,Tong L,et al.Nitrogen-doped ultrathin graphene encapsulated Cu nanoparticles decorated on SrTiO3 as an efficient water oxidation photocatalyst with activity comparable to BiVO4 under visible-light irradiation[J].Applied Catalysis B:Environmental,2020,279:119352.
[14] Yang X,Liu S,Li J,et al.Promotion effect of strong metal-support interaction to thermocatalytic,photocatalytic,and photothermocatalytic oxidation of toluene on Pt/SrTiO3[J].Chemosphere,2020,249:126096.
[15] Saadetnejad D,Yıldırım R.Photocatalytic hydrogen production by water splitting over Au/Al-SrTiO3[J].International Journal of Hydrogen Energy,2018,43(2):1116-1122.
[16] Yu X,Wang J,Fu X,et al.Construction of Z-scheme SrTiO3/Ag/Ag3PO4photocatalyst with oxygen vacancies for highly efficient degradation activity towards tetracycline[J].Separation and Purification Technology,2020,241:116718.
[17] Ribeiro R A P,Oliveira M C,Bomio M R D,et al.Connecting the surface structure,morphology and photocatalytic activity of Ag2O:an in depth and unified theoretical investigation[J].Applied Surface Science,2020,509:145321.
[18] Abdi M,Mahdikhah V,Sheibani S.Visible light photocatalytic performance of La-Fe co-doped SrTiO3 perovskite powder[J].Optical Materials,2020,102:109803.
[19] Cui Y,Sun H,Guo P.Highly efficient SrTiO3/Ag2O np heterojunction photocatalysts:improved charge carrier separation and enhanced visible-light harvesting[J].Nanotechnology,2020,31(24):245702.
[20] Zhang L,Qi H,Zhao Y,et al.Au nanoparticle modified three-dimensional network PVA/RGO/TiO2 composite for enhancing visible light photocatalytic performance[J].Applied Surface Science,2019,498:143855.
[21] Wei N,Cui H,Song Q,et al.Ag2O nanoparticle/TiO2nanobeltheterostructures with remarkable photo-response and photocatalytic properties under UV,visible and near-infrared irradiation[J].Applied Catalysis B:Environmental,2016,198:83-90.
[22] Liang N,Wang M,Jin L,et al.Highly efficient Ag2O/Bi2O2CO3pn heterojunction photocatalysts with improved visible-light responsive activity[J].ACS Applied Materials & Interfaces,2014,6(14):11698-11705.
[23] Guo H,Niu C G,Huang D W,et al.Integrating the plasmonic effect and pn heterojunction into a novel Ag/Ag2O/PbBiO2Br photocatalyst:broadened light absorption and accelerated charge separation co-mediated highly efficient visible/NIR light photocatalysis[J].Chemical Engineering Journal,2019,360:349-363.
[24] Jia A,Zhang X,Li F,et al.Facile fabrication of sponge-like hierarchically porous Ni,La-SrTiO3 templated by in situ generated carbon deposits and the enhanced visible-light photocatalytic activity[J].New Journal of Chemistry,2019,43(19):7409-7418.
[25] Ren H T,Liang Y,Han X,et al.Photocatalytic oxidation of aqueous ammonia by Ag2O/TiO2 (P25):new insights into selectivity and contributions of different oxidative species[J].Applied Surface Science,2020,504:144433.
[26] Xu P,Wang P,Wang Q,et al.Facile synthesis of Ag2O/ZnO/rGO heterojunction with enhanced photocatalytic activity under simulated solar light:kinetics and mechanism[J].Journal of Hazardous Materials,2021,403:124011.