Solar-driven gas phase photocatalytic CO2 methanation by multimetallic UiO-66 solids decorated with RuOx nanoparticles

被引:14
作者
Cabrero-Antonino, Maria [1 ]
Melillo, Arianna [1 ]
Montero-Lanzuela, Eva [1 ]
Alvaro, Mercedes [1 ]
Ferrer, Belen
Vaya, Ignacio [1 ,2 ]
Baldovi, Herme G. [1 ]
Navalon, Sergio [1 ]
机构
[1] Univ Politecn Valencia, Dept Quim, Camino Vera S-N, Valencia 46022, Spain
[2] Univ Politecn Valencia, Inst Tecnol Quim UPV CSIC, Ave De Los Naranjos S-N, Valencia 46022, Spain
关键词
Heterogeneous catalysis; Metal-organic frameworks; multimetallic UiO-66 solids; CO2; methanation; Simulated sunlight irradiation; METAL-ORGANIC FRAMEWORKS; CARBON-DIOXIDE; ENERGY; CONVERSION; REDUCTION; EMISSIONS; GRAPHENE; MEDIATOR;
D O I
10.1016/j.cej.2023.143553
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As there is an urgent need to produce solar fuels from CO2, we here report on the development of a series of multimetallic UiO-66(Zr/Ce/Ti) solids-supported RuOx nanoparticles as photocatalysts for selective gas phase CO2 methanation by H-2 under simulated sunlight irradiation. The trimetallic UiO-66(Zr/Ce/Ti) based-photocatalyst exhibits higher activity (1,900 mu mol g(-1) of CH4 after 22 h) than analogous mono- [UiO-66(Zr) or UiO-66 (Ce)] and bimetallic [UiO-66(Zr/Ce) or UiO-66(Zr/Ti)] derivatives, as well as higher than previous reports on metal-organic frameworks (MOFs). The experimental evidence on the observed order of photocatalytic activity and insights into the occurrence of a dual photochemical and photothermal mechanism for the most active trimetallic sample were obtained by means of spectroscopic techniques including fluorescence and laser flash photolysis, photoelectrochemical and additional photocatalytic measurements. This study exemplifies the benefits of developing multimetallic MOF-supported metal nanoparticles to achieve high photocatalytic activity for solar-driven gas phase CO2 conversion.
引用
收藏
页数:12
相关论文
共 71 条
[21]  
Gao W., CHEM SOC
[22]   Understanding Intrinsic Light Absorption Properties of UiO-66 Frameworks: A Combined Theoretical and Experimental Study [J].
Hendrickx, Kevin ;
Vanpoucke, Danny E. P. ;
Leus, Karen ;
Lejaeghere, Kurt ;
Van Yperen-De Deyne, Andy ;
Van Speybroeck, Veronique ;
Van Der Voort, Pascal ;
Hemelsoet, Karen .
INORGANIC CHEMISTRY, 2015, 54 (22) :10701-10710
[23]   Substituted Ti(IV) in Ce-UiO-66-NH2 Metal-Organic Frameworks Increases H2 and O2 Evolution under Visible Light [J].
Hou, Wenqing ;
Chen, Chen ;
Xie, Diya ;
Xu, Yiming .
ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (02) :2911-2921
[24]   Mixed metal-metal organic frameworks (MM-MOFs) and their use as efficient photocatalysts for hydrogen evolution from water splitting reactions [J].
Jaryal, Ritika ;
Kumar, Rakesh ;
Khullar, Sadhika .
COORDINATION CHEMISTRY REVIEWS, 2022, 464
[25]   CO2-fixation into cyclic and polymeric carbonates: principles and applications [J].
Kamphuis, Aeilke J. ;
Picchioni, Francesco ;
Pescarmona, Paolo P. .
GREEN CHEMISTRY, 2019, 21 (03) :406-448
[26]   Tuning Selectivity of CO2 Hydrogenation Reactions at the Metal/Oxide Interface [J].
Kattel, Shyam ;
Liu, Ping ;
Chen, Jingguang G. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (29) :9739-9754
[27]   Metal-Organic-Frameworks and Their Derived Materials in Photo-Thermal Catalysis [J].
Khan, Il Son ;
Garzon-Tovar, Luis ;
Mateo, Diego ;
Gascon, Jorge .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2022, 2022 (28)
[28]  
Khan S., 2022, INT J HYDROGEN ENERG
[29]   Functional porous coordination polymers [J].
Kitagawa, S ;
Kitaura, R ;
Noro, S .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (18) :2334-2375
[30]   Metal-Organic-Framework-Based Catalysts for Photoreduction of CO2 [J].
Li, Rui ;
Zhang, Wang ;
Zhou, Kun .
ADVANCED MATERIALS, 2018, 30 (35)