首页> 外文期刊>Journal of Solid State Chemistry >Synthesis of MIL-100(Fe)@MIL-53(Fe) as a novel hybrid photocatalyst and evaluation photocatalytic and photoelectrochemical performance under visible light irradiation
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Synthesis of MIL-100(Fe)@MIL-53(Fe) as a novel hybrid photocatalyst and evaluation photocatalytic and photoelectrochemical performance under visible light irradiation

机译:MIL-100(Fe)@ MIL-53(Fe)作为一种新型杂交光催化剂和评价光催化和光电化学性能下可见光照射

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摘要

The MIL-100(Fe)@MIL-53(Fe) was synthesized by the ultrasound method, while the initial solution for the preparation of the photocatalysts was included nanoparticles of MIL-100(Fe) and a precursor solution for the synthesizing of MIL-53(Fe). After an appropriate time of reaction, nanoparticles of MIL-100(Fe) were decorated on the surface of MIL-53(Fe). Phtoelectrochemical/electrochemical and photocatalytic degradation of methyl orange over MIL-100(Fe)@MIL-53(Fe) were explored. The phtoelectrochemical/electrochemical and photo catalytic performance of the prepared photocatalysts revealed that the introduction of nanoparticles of the MIL100(Fe) on the surface of MIL-53(Fe) enhanced the photocatalytic performance of the resulted photocatalyst compared to pure MIL-53(Fe) and MIL-100(Fe). The enhanced photocatalytic efficiency is ascribed to increase the visible light region absorption and to decrease the electron-hole recombination rate in the hybrid photocatalyst. The present work demonstrated that the photocatalytic properties of metal organic frameworks (MOFs) can be improved by the fabrication of hybrid photocatalysts based on the different types of MOFs.
机译:通过超声方法合成MIL-100(Fe)@ MIL-53(Fe),而纳米颗粒的纳米颗粒包含用于制备光催化剂的初始溶液和用于合成MIL的前体溶液。 -53(Fe)。在适当的反应时间后,MIL-100(Fe)的纳米颗粒在MIL-53(Fe)的表面上装饰。探讨了对甲基甲基甲基甲基甲基甲基甲基甲基@ MIL-53(Fe)的线电化学和光催化降解。制备的光催化剂的Phto电化学/电化学和光催化性能显示,与纯MIL-53(Fe )和MIL-100(FE)。增强的光催化效率归因于增加可见光区域的吸收并降低杂交光催化剂中的电子空穴重组率。本作者证明了金属有机骨架(MOF)的光催化性能可以通过基于不同类型的MOF制备杂合光催化剂来改善。

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