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Modular Construction of Prussian Blue Analog and TiO2 Dual‐Compartment Janus Nanoreactor for Efficient Photocatalytic Water Splitting

机译:普鲁士蓝色模拟和TiO2双隔室Janus纳米反应器的模块化建设用于高效的光催化水分裂

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摘要

Janus structures that include different functional compartments have attracted significant attention due to their specific properties in a diverse range of applications. However, it remains challenge to develop an effective strategy for achieving strong interfacial interaction. Herein, a Janus nanoreactor consisting of TiO2 2D nanocrystals integrated with Prussian blue analog (PBA) single crystals is proposed and synthesized by mimicking the planting process. In situ etching of PBA particles induces nucleation and growth of TiO2 nanoflakes onto the concave surface of PBA particles, and thus enhances the interlayer interaction. The anisotropic PBA–TiO2 Janus nanoreactor demonstrates enhanced photocatalytic activities for both water reduction and oxidation reactions compared with TiO2 and PBA alone. As far as it is known, this is the first PBA‐based composite that serves as a bifunctional photocatalyst for solar water splitting. The interfacial structure between two materials is vital for charge separation and transfer based on the spectroscopic studies. These results shed light on the elaborate construction of Janus nanoreactor, highlighting the important role of interfacial design at the microscale level.
机译:包括不同功能隔间的Janus结构引起了由于它们在各种应用中的特定性质而引起了重要的关注。然而,制定有效界面互动的有效策略仍然挑战。这里,由与普鲁士蓝色模拟(PBA)单晶一体化的TiO 2 2D纳米晶体组成的Janus纳米反应器由模拟种植过程来提出和合成。在原位蚀刻PBA颗粒诱导TiO2纳米薄片的核切割和生长在PBA颗粒的凹面上,从而提高层间相互作用。直观的PBA-TiO2 Janus纳米反应器显示出与单独的TiO2和PBA相比的水还原和氧化反应的增强的光催化活性。众所周知,这是第一种基于PBA的复合物,其用作用于太阳能分裂的双官能光催化剂。两种材料之间的界面结构对于基于光谱研究的电荷分离和转移至关重要。这些结果阐明了Janus纳米反应器的精心构建,突出了界面设计在微观层面上的重要作用。

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