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Metal-organic framework-based nanomaterials for photocatalytic hydrogen peroxide production

机译:基于金属 - 有机框架的光催化氢过氧化氢生产纳米材料

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As an environmentally friendly and renewable energy source, hydrogen peroxide (H2O2) could be produced photocatalytically through selective two-electron reduction of O-2 using effective photocatalysts. Metal organic frameworks (MOFs), as hybrid porous materials consisting of organic linkers and metal oxide clusters, have aroused great interest in the design of effective catalysts for photocatalysis under visible light irradiation due to their unique properties, such as large surface area, good chemical stability, and diverse and tunable chemical components. In this perspective, we highlight our recent progress in the application of various MOF-based nanomaterials for photocatalytic H2O2 production from the selective two-electron reduction of O-2 in a single-phase system (acetonitrile) and two-phase system (water/benzyl alcohol). Photocatalytic H2O2 production in the single-phase system achieved a higher activity using NiO as a cocatalyst of the MOF rather than Pt. Photocatalytic H2O2 production in the two-phase system using various hydrophobic MOFs showed further improved activity compared to the single-phase system. It has been possible to design a hydrophobic MOF-based photocatalyst with high activity and stability under recycling conditions. These studies gathered in this perspective revealed the novel application of MOFs in the field of energy production.
机译:作为环保和可再生能源,通过使用有效光催化剂的选择性两电子减少,可以通过选择性两电子减少来产生过氧化氢(H2O2)。金属有机框架(MOF),作为由有机接头和金属氧化物簇组成的混合多孔材料,由于其独特的性质,如大表面积,良好的化学品,对可见光辐射的有效催化剂的有效催化剂的设计感兴趣。稳定性,多样化和可调化的化学成分。在这种观点中,我们突出了在单相系统(乙腈)和两相系统中的O-2的选择性两电子减少的光催化H2O2生产中应用各种MOF基纳米材料的近期进展。(水/苯甲醇)。单相体系中的光催化H2O2生产使用NIO作为MOF的助催化剂而不是PT的助催化剂实现了更高的活性。使用各种疏水MOF的两相系统中的光催化H2O2产生与单相体系相比,各种疏水性MOF的活动表现出进一步提高的活性。可以在再循环条件下设计具有高活性和稳定性的疏水性MOF基光催化剂。这些研究在这种观点中聚集了,揭示了MOF在能源生产领域的新颖应用。

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