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Exploration of Zr–Metal–Organic Framework as Efficient Photocatalyst for Hydrogen Production

机译:Zr-金属-有机骨架作为高效的产氢光催化剂的探索

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摘要

The application of metal–organic framework (MOF) in the field of photocatalysis is limited, because of its unstable chemical properties and failure to respond in visible light. Herein, the Pd/MOF catalysts were prepared by impregnation reduction. It is important that we have reasonably constructed the dye-sensitized system of Pd/MOF and successfully extended the application of MOF to the visible range. It exhibited maximal photocatalytic activity (9.43 mmol/g) under visible-light irradiation (λ ≥ 420 nm) with eosin Y as a photo-sensitizer, which was enhanced twice the order of magnitude compared with the pure MOF (0.03 mmol/g). The activation process with an exchangeable guest solvent produced the Zr–MOF with the high surface area and the high stability, which provide a great electronic transmission capacity. The Pd nanoparticles provide an electronic outlet, and the dye broadens the spectral absorption range. The synergistic effect of the various components contributes to the high hydrogen production activity. This work provides a reference for the application of MOF in the field of photocatalysis.
机译:金属-有机骨架(MOF)在光催化领域的应用受到限制,因为其化学性质不稳定且无法在可见光下响应。在此,通过浸渍还原来制备Pd / MOF催化剂。重要的是,我们必须合理地构建Pd / MOF的染料敏化系统,并将MOF的应用成功扩展到可见光范围。在曙红Y作为光敏剂的情况下,它在可见光照射(λ≥420nm)下表现出最大的光催化活性(9.43 mmol / g),是纯MOF(0.03 mmol / g)的两倍。 。用可交换的客体溶剂进行的活化过程产生了具有高表面积和高稳定性的Zr-MOF,从而提供了强大的电子传输能力。 Pd纳米颗粒提供电子出口,并且染料拓宽了光谱吸收范围。各种组分的协同作用有助于高产氢活性。这项工作为MOF在光催化领域的应用提供了参考。

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