نتایج جستجو برای: mil 53

تعداد نتایج: 76437  

Journal: :Inorganics (Basel) 2022

MOF-derived carbon-based materials have attracted widespread attention due to their relatively large surface area, morphology, and stability in water. Considering these advantages, present themselves as excellent adsorbents. In this work, a novel method was designed for the fabrication of nano zero-valent-iron (nZVI) carbon composite. The utilization zinc oxide nanorods (ZnONRs) role sacrificia...

Journal: :Chemical communications 2012
Farid Nouar Thomas Devic Hubert Chevreau Nathalie Guillou Emma Gibson Guillaume Clet Marco Daturi Alexandre Vimont Jean Marc Grenèche Matthew I Breeze Richard I Walton Philip L Llewellyn Christian Serre

A mixed cation MIL-53(Cr-Fe) MOF has been obtained by direct synthesis. Multiple experimental techniques have demonstrated the presence of a genuine mixed phase, leading to a breathing behaviour different from either of the single cation analogues.

2015
Li Shi Tao Wang Huabin Zhang Kun Chang Xianguang Meng Huimin Liu Jinhua Ye

The photocatalytic reduction of Cr(VI) is investigated over iron(III)-based metal-organic frameworks (MOFs) structured as MIL-88B. It is found that MIL-88B (Fe) MOFs, containing Fe3-μ3-oxo clusters, can be used as photocatalyst for the reduction of Cr(VI) under visible light irradiation, which is due to the direct excitation of Fe3-μ3-oxo clusters. The amine-functionalized MIL-88B (Fe) MOFs (de...

Journal: :Energies 2022

MIL-53(Fe) was prepared and modified with benzoic acid to prepare MIL-53(Fe)-BA additive, which used improve the catalytic oxidation rate of sulfite, prevent scaling desulfurization tower, efficiency during wet flue gas (WFGD) process power plants. exhibits abundant Lewis sites because appearance coordination unsaturated Fe atoms. Due excellent sorption capacity, Ca(OH)2 as main SO2 desulfurize...

Journal: :ACS Applied Materials & Interfaces 2021

Heterojunction catalysts have drawn increasing interest for the visible light-driven Fenton reaction and bring tremendous opportunities environmental remediation. Herein, a BiOI/MIL-53(Fe) Z-scheme heterojunction (named BMFe) was synthesized first time via facile strategy. Compared with pristine BiOI MIL-53(Fe) catalysts, two-dimensional/three-dimensional (2D/3D) catalyst manifested remarkable ...

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