[1] G.N. Schrauzer, T.D. Guth, Photolysis of water and photoreduction of nitrogen on titanium dioxide, J. Am. Chem. Soc. 99(22)(1977)7189-7193. [2] H. Diarmand-Khalilabad, A. Habibi-Yangjeh, D. Seifzadeh, S. Asadzadeh-Khaneghah, E. Vesali-Kermani, G-C3N4 nanosheets decorated with carbon dots and CdS nanoparticles:Novel nanocomposites with excellent nitrogen photofixation ability under simulated solar irradiation, Ceram. Int. 45(2)(2019)2542-2555. [3] V.H. Nguyen, M. Mousavi, J.B. Ghasemi, Q.V. Le, S.A. Delbari, M. Shahedi Asl, M. Shokouhimehr, M. Mohammadi, Y. Azizian-Kalandaragh, A. Sabahi Namini, In situ preparation of g-C3N4 nanosheet/FeOCl:Achievement and promoted photocatalytic nitrogen fixation activity, J. Colloid Interface Sci. 587(2021)538-549. [4] Y.J. Xue, C.Q. Ma, Q.F. Yang, X.Y. Wang, S.N. An, X.L. Zhang, J. Tian, Construction of g-C3N4 with three coordinated nitrogen (N3 C) vacancies for excellent photocatalytic activities of N2 fixation and H2O2 production, Chem. Eng. J. 457(2023)141146. [5] M. Mousavi, M.M. Habibi, G.K. Zhang, P. Pourhakkak, S. Moradian, J.B. Ghasemi, In-situ construction of ZnO/Sb2MoO6 nano-heterostructure for efficient visible-light photocatalytic conversion of N2 to NH3, Surf. Interfaces 30(2022)101844. [6] V.H. Nguyen, M. Mousavi, J.B. Ghasemi, Q. Van Le, S. Ali Delbari, M. Shahedi Asl, M. Mohammadi, M. Shokouhimehr, A. Sabahi Namini, High-impressive separation of photoinduced charge carriers on step-scheme ZnO/ZnSnO3/Carbon dots heterojunction with efficient activity in photocatalytic NH3 production, J. Taiwan Inst. Chem. Eng. 118(2021)140-151. [7] L. Chen, X.Q. Dai, X.J. Li, J.F. Wang, H. Chen, X. Hu, H.J. Lin, Y.M. He, Y. Wu, M.H. Fan, A novel Bi2S3/KTa0.75Nb0.25O3 nanocomposite with high efficiency for photocatalytic and piezocatalytic N2 fixation, J. Mater. Chem. A 9(22)(2021)13344-13354. [8] L. Chen, J.F. Wang, X.J. Li, J.Y. Zhang, C.R. Zhao, X. Hu, H.J. Lin, L.H. Zhao, Y. Wu, Y.M. He, Facile preparation of Ag2S/KTa0.5Nb0.5O3 heterojunction for enhanced performance in catalytic nitrogen fixation via photocatalysis and piezo-photocatalysis, Green Energy Environ. 8(6)(2023)1630-1643. [9] S. Mansingh, S. Subudhi, S. Sultana, G. Swain, K. Parida, Cerium-based metal-organic framework nanorods nucleated on CeO2 nanosheets for photocatalytic N2 fixation and water oxidation, ACS Appl. Nano Mater. 4(9)(2021)9635-9652. [10] A. Hussain, J.H. Hou, M. Tahir, S.S. Ali, Z.U. Rehman, M. Bilal, T.T. Zhang, Q. Dou, X.Z. Wang, Recent advances in BiOX-based photocatalysts to enhanced efficiency for energy and environment applications, Catal. Rev. 66(1)(2024)119-173. [11] L. Zeng, F. Zhe, Y. Wang, Q.L. Zhang, X.Y. Zhao, X. Hu, Y. Wu, Y.M. He, Preparation of interstitial carbon doped BiOI for enhanced performance in photocatalytic nitrogen fixation and methyl orange degradation, J. Colloid Interface Sci. 539(2019)563-574. [12] Z.H. Ying, S.T. Chen, T.Y. Peng, R.J. Li, J. Zhang, Fabrication of an Fe-doped SrTiO3 photocatalyst with enhanced dinitrogen photofixation performance, Eur. J. Inorg. Chem. 2019(16)(2019)2182-2192. [13] W.Q. Zhang, P.X. Xing, J.Y. Zhang, L. Chen, J.Y. Yang, X. Hu, L.H. Zhao, Y. Wu, Y.M. He, Facile preparation of novel nickel sulfide modified KNbO3 heterojunction composite and its enhanced performance in photocatalytic nitrogen fixation, J. Colloid Interface Sci. 590(2021)548-560. [14] Z. Zhao, D.D. Wang, R. Gao, G.B. Wen, M. Feng, G.X. Song, J.B. Zhu, D. Luo, H.Q. Tan, X. Ge, W. Zhang, Y.J. Zhang, L.R. Zheng, H.B. Li, Z.W. Chen, Magnetic-field-stimulated efficient photocatalytic N2 fixation over defective BaTiO3 perovskites, Angew. Chem. Int. Ed. 60(21)(2021)11910-11918. [15] C.E. Choong, C.M. Park, Y.Y. Chang, J.K. Yang, J.R. Kim, S.E. Oh, B.H. Jeon, E.H. Choi, Y. Yoon, M. Jang, Interfacial coupling perovskite CeFeO3 on layered graphitic carbon nitride as a multifunctional Z-scheme photocatalyst for boosting nitrogen fixation and organic pollutants demineralization, Chem. Eng. J. 427(2022)131406. [16] J.Y. Zhang, L. Yue, Z.H. Zeng, C.R. Zhao, L.J. Fang, X. Hu, H.J. Lin, L.H. Zhao, Y.M. He, Preparation of NaNbO3 microcube with abundant oxygen vacancies and its high photocatalytic N2 fixation activity in the help of Pt nanoparticles, J. Colloid Interface Sci. 636(2023)480-491. [17] M. Cheng, C. Xiao, Y. Xie, Photocatalytic nitrogen fixation:The role of defects in photocatalysts, J. Mater. Chem. A 7(34)(2019)19616-19633. [18] Y. Fang, Y. Cao, B.H. Tan, Q.L. Chen, Oxygen and titanium vacancies in a BiOBr/MXene-Ti3C2 composite for boosting photocatalytic N2 fixation, ACS Appl. Mater. Interfaces 13(36)(2021)42624-42634. [19] X.J. Li, C.R. Zhao, J.F. Wang, J.Y. Zhang, Y. Wu, Y.M. He, Cu-doped Bi/Bi2WO6 catalysts for efficient N2 fixation by photocatalysis, Front. Chem. Sci. Eng. 17(10)(2023)1412-1422. [20] Y.H. Feng, Z. zhao, T. Wang, J.M. Li, M. Xu, H.L. Jiao, C. Wang, H.B. Li, M. Feng, Magnetic field-enhanced photocatalytic nitrogen fixation over defect-rich ferroelectric Bi2WO6, Ceram. Int. 48(14)(2022)20062-20069. [21] J.F. Wang, C.R. Zhao, S.D. Yuan, X.J. Li, J.Y. Zhang, X. Hu, H.J. Lin, Y. Wu, Y.M. He, One-step fabrication of Cu-doped Bi2MoO6 microflower for enhancing performance in photocatalytic nitrogen fixation, J. Colloid Interface Sci. 638(2023)427-438. [22] P. Chen, H.J. Liu, Y.J. Sun, J.Y. Li, W. Cui, L.A. Wang, W.D. Zhang, X.Y. Yuan, Z.M. Wang, Y.X. Zhang, F. Dong, Bi metal prevents the deactivation of oxygen vacancies in Bi2O2CO3 for stable and efficient photocatalytic NO abatement, Appl. Catal. B Environ. 264(2020)118545. [23] L.X. Li, H.J. Gao, G.R. Liu, S.F. Wang, Z. Yi, X.W. Wu, H. Yang, Synthesis of carnation flower-like Bi2O2CO3 photocatalyst and its promising application for photoreduction of Cr (VI), Adv. Powder Technol. 33(3)(2022)103481. [24] C.R. Zhao, X.J. Li, L. Yue, S.D. Yuan, X.J. Ren, Z.H. Zeng, X. Hu, Y. Wu, Y.M. He, One-step preparation of novel Bi-Bi2O3/CdWO4 Z-scheme heterojunctions with enhanced performance in photocatalytic NH3 synthesis, J. Alloys Compd. 968(2023)171956. [25] K. Pournemati, A. Habibi-Yangjeh, A. Khataee, Outstanding photocatalytic nitrogen fixation performance of TiO2 QDs modified by Bi2O3/NaBiS2 nanostructures upon simulated sunlight, J. Colloid Interface Sci. 641(2023)1000-1013. [26] X.L. Zhang, L. Shi, Y.S. Zhang, Preparation of organic-inorganic PDI/BiO2-x photocatalyst with boosted photocatalytic performance, J. Taiwan Inst. Chem. Eng. 132(2022)104111. [27] K.M. Qi, Y.P. Ye, B. Wei, M.X. Li, Y.X. Lun, X.Y. Xie, H.J. Xie, N-CQDs from reed straw enriching charge over BiO2-x/BiOCl p-n heterojunction for improved visible-light-driven photodegradation of organic pollutants, J. Hazard. Mater. 432(2022)128759. [28] X.W. Zhu, Z.L. Wang, K. Zhong, Q.D. Li, P.H. Ding, Z.Y. Feng, J.M. Yang, Y.S. Du, Y.H. Song, Y.J. Hua, J.J. Yuan, Y.B. She, H.M. Li, H. Xu, Mo-O-Bi Bonds as interfacial electron transport bridges to fuel CO2 photoreduction via in situ reconstruction of black Bi2MoO6/BiO2-x heterojunction, Chem. Eng. J. 429(2022)132204. [29] Y.F. Miao, R.T. Guo, J.W. Gu, Y.Z. Liu, G.L. Wu, C.P. Duan, W.G. Pan, Oxygen vacancy-rich BiO2-x:Super-active co-catalyst on g-C3N4 for efficient visible-light photocatalytic CO2 reduction, J. CO2 Util. 44(2021)101377. [30] X.Y. Zhang, C.Y. Gao, X.Y. Wu, Construction of BiO2-x/Bi2O2.75 heterojunction for highly efficient photocatalytic CO2 reduction, Funct. Mater. Lett. 14(2)(2021)2150010. [31] B.T. Sun, Y.Y. Qian, Z.Q. Liang, Y.C. Guo, Y.J. Xue, J. Tian, H.Z. Cui, Oxygen vacancy-rich BiO2-x ultra-thin nanosheet for efficient full-spectrum responsive photocatalytic oxygen evolution from water splitting, Sol. Energy Mater. Sol. Cells 195(2019)309-317. [32] J.F. Jin, J.S. Sun, K.H. Lv, X. Guo, Q.L. Hou, J.P. Liu, J.T. Wang, Y.R. Bai, X.B. Huang, Oxygen vacancy BiO2-x/Bi2WO6 synchronous coupling with Bi metal for phenol removal via visible and near-infrared light irradiation, J. Colloid Interface Sci. 605(2022)342-353. [33] V. Shanker, S.L. Samal, G.K. Pradhan, C. Narayana, A.K. Ganguli, Nanocrystalline NaNbO3 and NaTaO3:Rietveld studies, Raman spectroscopy and dielectric properties, Solid State Sci. 11(2)(2009)562-569. [34] M. Wang, G.Q. Tan, D. Zhang, B. Li, L. Lv, Y. Wang, H.J. Ren, X.L. Zhang, A. Xia, Y. Liu, Defect-mediated Z-scheme BiO2-x/Bi2O2.75 photocatalyst for full spectrum solar-driven organic dyes degradation, Appl. Catal. B Environ. 254(2019)98-112. [35] S. Kumar, S. Khanchandani, M. Thirumal, A.K. Ganguli, Achieving enhanced visible-light-driven photocatalysis using type-II NaNbO3/CdS core/shell heterostructures, ACS Appl. Mater. Interfaces 6(15)(2014)13221-13233. [36] Y.F. Jia, S.P. Li, H.X. Ma, J.Z. Gao, G.Q. Zhu, F.C. Zhang, J.Y. Park, S. Cha, J.S. Bae, C.L. Liu, Oxygen vacancy rich Bi2O4-Bi4O7-BiO2-x composites for UV-vis-NIR activated high efficient photocatalytic degradation of bisphenol A, J. Hazard. Mater. 382(2020)121121. [37] L.Y. Huang, J.W. Liu, Y.P. Li, L. Yang, C.B. Wang, J. Liu, H.M. Li, L.J. Huang, Enhancement of photocatalytic activity of Z-scheme BiO2-x/BiOI heterojunction through vacancy engineering, Appl. Surf. Sci. 555(2021)149665. [38] H. Xu, C.T. Liu, H.M. Li, Y.G. Xu, J.X. Xia, S. Yin, L. Liu, X.Y. Wu, Synthesis, characterization and photocatalytic activity of NaNbO3/ZnO heterojunction photocatalysts, J. Alloys Compd. 509(37)(2011)9157-9163. [39] Q.Q. Liu, Y.Y. Chai, L. Zhang, J. Ren, W.L. Dai, Highly efficient Pt/NaNbO3 nanowire photocatalyst:Its morphology effect and application in water purification and H2 production, Appl. Catal. B Environ. 205(2017)505-513. [40] D. Kumar, S. Sharma, N. Khare, RGO nanosheets coupled NaNbO3 nanorods based nanocomposite for enhanced photocatalytic and photoelectrochemical water splitting activity, Adv. Powder Technol. 32(12)(2021)4754-4764. [41] H.P. Luo, C.X. Zhan, A. Uddin, H. Du, M.W. Jiang, F. Jiang, H. Chen, Oxygen Vacancy-mediated unraveling active species sources in BiO2-x Catalysts:The significance of lattice and molecular oxygen in catalytic reaction in aqueous solution, Chem. Eng. J. 483(2024)149144. [42] Y.H. Liu, X.N. Chu, A.Q. Shi, C. Yao, C.Y. Ni, X.Z. Li, Construction of 2D bismuth silicate heterojunctions from natural mineral toward cost-effective photocatalytic reduction of CO2, Ind. Eng. Chem. Res. 61(34)(2022)12294-12306. [43] R.A. He, H.J. Liu, H.M. Liu, D.F. Xu, L.Y. Zhang, S-scheme photocatalyst Bi2O3/TiO2 nanofiber with improved photocatalytic performance, J. Mater. Sci. Technol. 52(2020)145-151. [44] J. Low, B.Z. Dai, T. Tong, C.J. Jiang, J.G. Yu, In situ irradiated X-ray photoelectron spectroscopy investigation on a direct Z-scheme TiO2/CdS composite film photocatalyst, Adv. Mater. 31(5)(2019) e1807920. [45] F.F. Abdi, R. van de Krol, Nature and light dependence of bulk recombination in co-pi-catalyzed BiVO4 photoanodes, J. Phys. Chem. C 116(17)(2012)9398-9404. [46] D.E. Scaife, Oxide semiconductors in photoelectrochemical conversion of solar energy, Sol. Energy 25(1)(1980)41-54. [47] J.F. Wang, L.F. Guan, S.D. Yuan, J.Y. Zhang, C.R. Zhao, X. Hu, B.T. Teng, Y. Wu, Y.M. He, Greatly boosted photocatalytic N2-to-NH3 conversion by bismuth doping in CdMoO4:Band structure engineering and N2 adsorption modification, Sep. Purif. Technol. 314(2023)123554. [48] S.M. Wang, W. An, Y. Guan, Z.Q. Zheng, Z.H. Hu, H.R. Wang, Z.Y. Li, Type-Ⅰ hetero-junction of BiOI-BiO2-x anchored on Ni foam accelerating charge separation and transfer for efficiently purifying hazardous wastewater, J. Photochem. Photobiol. A Chem. 426(2022)113705. [49] J.Q. Li, Y.Q. Mei, S.C. Ma, Q.F. Yang, B.J. Jiang, B.F. Xin, T.J. Yao, J. Wu, Internal-electric-field induced high efficient type-I heterojunction in photocatalysis-self-Fenton reaction:Enhanced H2O2 yield, utilization efficiency and degradation performance, J. Colloid Interface Sci. 608(2022)2075-2087. [50] W.L. Shi, C.C. Hao, Y.X. Shi, F. Guo, Y.B. Tang, Effect of different carbon dots positions on the transfer of photo-induced charges in type I heterojunction for significantly enhanced photocatalytic activity, Sep. Purif. Technol. 304(2023)122337. [51] X.Z. Li, H.Y. Shi, S.X. Zuo, B.Y. Gao, C.Y. Han, T.S. Wang, C. Yao, C.Y. Ni, Lattice reconstruction of one-dimensional mineral to achieve dendritic heterojunction for cost-effective nitrogen photofixation, Chem. Eng. J. 414(2021)128797. [52] L. Chen, W.Q. Zhang, J.F. Wang, X.J. Li, Y. Li, X. Hu, L.H. Zhao, Y. Wu, Y.M. He, High piezo/photocatalytic efficiency of Ag/Bi5O7I nanocomposite using mechanical and solar energy for N2 fixation and methyl orange degradation, Green Energy Environ. 8(1)(2023)283-295. [53] Y.Q. Liu, S.Z. Hu, X.S. Zhang, S.G. Sun, Investigation of photoelectrocatalytic degradation mechanism of methylene blue by α-Fe2O3 nanorods array, Chin. J. Chem. Eng. 57(2023)162-172. [54] C.R. Zhao, L. Yue, S.D. Yuan, X.J. Ren, Z.H. Zeng, X. Hu, L.H. Zhao, Y. Wu, Y.M. He, Enhanced photocatalytic N2 fixation and water purification using Bi/ZnSnO3 composite:Mechanistic insights and novel applications, J. Ind. Eng. Chem. 132(2024)135-147. [55] S.X. Zuo, H.G. Zhang, X.Z. Li, C.Y. Han, C. Yao, C.Y. Ni, Dual active sites boosting photocatalytic nitrogen fixation over upconversion mineral nanocomposites under the full spectrum, ACS Sustainable Chem. Eng. 10(4)(2022)1440-1450. [56] F. Guo, H.R. Sun, Y.X. Shi, F.Y. Zhou, W.L. Shi, CdS nanoparticles decorated hexagonal Fe2O3 nanosheets with a Z-scheme photogenerated electron transfer path for improved visible-light photocatalytic hydrogen production, Chin. J. Chem. Eng. 43(2022)266-274. [57] A.P. Varghese, B. Neppolian, S.K. Lakhera, Pitfalls of using Nessler's reagent for ammonia detection in photocatalytic nitrogen fixation studies:Leveraging 1H NMR for enhanced accuracy and precision, Ind. Eng. Chem. Res. 62(2023)12530-12537. [58] L.L. Zhang, L.X. Ding, G.F. Chen, X.F. Yang, H.H. Wang, Ammonia synthesis under ambient conditions:selective electroreduction of dinitrogen to ammonia on black phosphorus nanosheets, Angew. Chem. Int. Ed. 58(2019)2612-2616. [59] Y.X. Zhao, R. Shi, X.A. Bian, C. Zhou, Y.F. Zhao, S. Zhang, F. Wu, G.I.N. Waterhouse, L.Z. Wu, C.H. Tung, T.R. Zhang, Ammonia detection methods in photocatalytic and electrocatalytic experiments:How to improve the reliability of NH3 production rates?Adv. Sci. 6(8)(2019)1802109. |