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- W2947149128 abstract "Abstract A novel multiscale pore structure material is firstly synthesized by means of the MOF confined in ordered macroporous-mesoporous-TiO 2 (FeCoNi-MOF@TiO2). We have successfully achieved that three-scale ordered porous structures are integrated into one material, and the porous sizes are 400 nm, 5.1 nm and 3.4 nm, respectively. A photo-based electrocatalytic OER catalytic system was designed, and the FeCoNi-MOF@TiO2 as a catalyst exhibits high catalytical activity for OER under the irradiation of UV light. The electrons of macroporous-mesoporous-TiO2 are excited and transferred to the loaded FeCoNi-MOF, when the macroporous-mesoporous-TiO2 absorbs the UV light, which can improve the conductivity of the FeCoNi-MOF. The photo-induced electron of macroporous-mesoporous-TiO 2 significantly boosts the electrocatalytic active of FeCoNi-MOF. These results provide a promising route on enhancing the catalytic activity of MOFs in electrocatalytic reaction." @default.
- W2947149128 created "2019-06-07" @default.
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- W2947149128 date "2019-09-01" @default.
- W2947149128 modified "2023-09-24" @default.
- W2947149128 title "MOF confined in macroporous-mesoporous-TiO2 for light-boosting electrocatalytical oxygen production" @default.
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- W2947149128 doi "https://doi.org/10.1016/j.mtener.2019.05.008" @default.
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