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Encapsulating a Co(II) Molecular Photocatalyst in Metal-Organic Framework for Visible-Light-Driven H-2 Production: Boosting Catalytic Efficiency via Spatial Charge Separation

机译:在可见光驱动H-2生产的金属有机框架中封装Co(II)分子光催化剂:通过空间电荷分离提高催化效率

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摘要

The photodriven H-2 generation from water splitting, providing a high-performance energy source, has been recognized to be a promising pathway for solar energy conversion. However, the efficient charge separation for photocatalysts remains a critical issue. In this work, we have rationally encapsulated a Co(II) molecular photcatalyst, [Co-II(TPA)CI][CI] (TPA = tris(2-pyridylmethyl)-amine), inside the cages of a metal organic framework (MOF) photosensitizer, MIL-125-NH2, for visible-light-driven H-2 production. This noble-metal-free composite photocatalyst facilitates the photo induced charge transfer from MIL-125-NH2 to the Co(II) complex and greatly improves the spatial charge separation, thus significantly boosting the photocatalytic efficiency of H-2 production. In addition, MIL-125-NH2 behaves as a host matrix to achieve hetrogenization of the Co(II) complex, and thus, the composite can be well-recycled.
机译:由水分解产生的光驱动H-2提供了高性能能源,已被认为是太阳能转化的有前途的途径。然而,光催化剂的有效电荷分离仍然是关键问题。在这项工作中,我们合理地将Co(II)分子光催化剂[Co-II(TPA)CI] [CI](TPA =三(2-吡啶基甲基)-胺)封装在金属有机骨架( MOF)光敏剂MIL-125-NH2,用于可见光驱动的H-2生产。这种不含贵金属的复合光催化剂促进了从MIL-125-NH2到Co(II)配合物的光诱导电荷转移,并大大改善了空间电荷分离,从而显着提高了H-2生产的光催化效率。此外,MIL-125-NH2充当宿主基质以实现Co(II)配合物的均质化,因此可以很好地回收复合材料。

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