[1] LIU Y,YANG S,LIU X,et al.Driving forces of temporal-spatial differences in CO2 emissions at the city level for China’s transport sector [J].Environmental Science and Pollution Research,2021,28(20):25993-26006. [2] JI L,LI L,JI X,et al.Highly selective electrochemical reduction of CO2 to alcohols on an FeP nanoarray [J].Angewandte Chemie International Edition,2020,59(2):758-762. [3] WU Y,JIANG Z,LU X,et al.Domino electroreduction of CO2 to methanol on a molecular catalyst [J].Nature,2019,575 (7784):639-642. [4] QIN H,ZHANG H,WANG K,et al.Theoretical study of CO2 hydrogenation to methanol on modified Au/In2O3 catalysts:effects of hydrogen spillover and activation energy prediction for hydrogen transfer [J].Chem Catalysis,2024,744(7):122469-122485. [5] MA R,SUN J,LI D H,et al.Review of synergistic photo-thermo-catalysis:mechanisms,materials and applications [J].International Journal of Hydrogen Energy,2020,45(55):30288-30324. [6] HUANG W,ZHANG L,HONG J,et al.Enhanced photothermal catalysis for CO2 reduction with H2O by amphoteric metal oxides modified TiO2 [J].Waste Disposal & Sustainable Energy,2024,6(3):309-321. [7] ZHANG X Y,YANG Y,XIONG L J,et al.Synergistic coupling of photocatalysis and thermocatalysis for efficient CO2 conversion by direct z-scheme WO3/WS2 [J].Chemcatchem,2023,15(15):11568-11574. [8] FAN K W,TAHIR M,ALIAS H.Visible light promoted low temperature photothermal CO2 methanation over morphologically engineered Ni/TiO2 NWs catalyst [J].Materials Today:Proceedings,2024,97:9-16. [9] SUN D L,CAI J H,YANG Y T,et al.Boosting the visible light photo-thermal catalytic performance of α-Bi2O3 by tuning Fe doping amount in carbonylation of isobutyl amine with CO2 [J].Chemical Engineering Science,2024,284:119398-119454. [10] LI Q W,JIAO Y.Ultrafast photothermal actuators with a large helical curvature based on ultrathin GO and Biaxially oriented PE films [J].ACS Applied Materials & Interfaces,2022,14(50):55828-55838. [11] JIN M,YANG X T,WANG X S,et al.UV-visible-infrared light driven photothermal synergistic catalytic reduction of CO2 over Cs3Bi2Br9/MoS2 S-scheme photocatalyst [J].Journal of Colloid and Interface Science,2024,680:235-245. [12] LI S M,WANG C H,LI D H,et al.Bi4TaO8Cl/Bi heterojunction enables high-selectivity photothermal catalytic conversion of CO2-H2O flow to liquid alcohol [J].Chemical Engineering Journal,2022,435(3):135133. [13] 张 伟.TiO2基纳米复合材料的制备及其光催化性能研究 [D].兰州: 兰州理工大学,2023. [14] WANG T,YAO X,LIANG L,et al.Unveiling the promotion role of ZnO on Zn-Al spinel oxide for CO2 hydrogenation [J].Journal of Energy Chemistry,2025,100(1):18-25. [15] PEI L,WANG X S,ZHU H,et al.Photothermal effect- and interfacial chemical bond-modulated NiOx/Ta3N5 heterojunction for efficient CO2 photoreduction [J].ACS Applied Materials & Interfaces,2023,15(44):51300-51308. [16] 李京修.g-C3N4/F-TiO2-x复合光催化剂的制备及其光催化性能研究 [D].南京:南京航空航天大学,2019. [17] KANG X,DONG G,DONG T.Oxygen vacancy defect engineering of heterophase junction TiO2:interfacial/surface oxygen vacancies coadjust the photocatalytic ROS production [J].ACS Applied Energy Materials,2023,6(2):1025-1036. [18] 张理元,张玉娇,刘 佳,等.吸附-光催化一体的金属有机框架/氟化二氧化钛(MOFs/F-TiO2)纳米复合材料的构建 [J].环境化学,2024,43(12):4312-4324. [19] SUN Y J,ZHAO Z W,DONG F,et al.Mechanism of visible light photocatalytic NOx oxidation with plasmonic Bi cocatalyst-enhanced(BiO)2CO3 hierarchical microspheres [J].Physical Chemistry Chemical Physics,2015,17(16):10383-10390. [20] ZHANG M M,ZHU Y Y,LI W J,et al.Double z-scheme system of silver bromide@bismuth tungstate/tungsten trioxide ternary heterojunction with enhanced visible-light photocatalytic activity [J].Journal of Colloid And Interface Science,2018,509:18-24. [21] DENG H X,ZHU X T,CHEN Z J,et al.Oxygen vacancy engineering of TiO2-x nanostructures for photocatalytic CO2 reduction [J].Carbon Letters,2022,32(7):1671-1680. [22] CUI D D,WANG L,XU K,et al.Band-gap engineering of BiOCl with oxygen vacancies for efficient photooxidation properties under visible-light irradiation [J].Journal of Materials Chemistry A,2018,6(5):2193-2199. [23] LIU W R,YU S,LIU Z,et al.Hierarchical hollow TiO2@Bi2WO6 with light-driven excited Bi(3-x)+ sites for efficient photothermal catalytic CO2 reduction [J].Inorganic Chemistry,2024,63(15):6714-6722. [24] LI A,CAO Q,ZHOU G Y,et al.Three-phase photocatalysis for the enhanced selectivity and activity of CO2 reduction on a hydrophobic surface [J].Angewandte Chemie International Edition,2019,58(41):14549-14555. |