纳米反应器
杰纳斯
光催化
普鲁士蓝
材料科学
纳米技术
模块化设计
分解水
对偶(语法数字)
催化作用
化学
纳米颗粒
计算机科学
电极
有机化学
文学类
操作系统
物理化学
艺术
电化学
作者
Chunjing Shi,Sheng Ye,Xuewen Wang,Fanning Meng,Junxue Liu,Ting Yang,Wei Zhang,Jiatong Wei,Na Ta,Gao Qing Lu,Ming Hu,Jian Liu,Jian Liu,Jian Liu
标识
DOI:10.1002/advs.202001987
摘要
Abstract 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 TiO 2 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 TiO 2 nanoflakes onto the concave surface of PBA particles, and thus enhances the interlayer interaction. The anisotropic PBA–TiO 2 Janus nanoreactor demonstrates enhanced photocatalytic activities for both water reduction and oxidation reactions compared with TiO 2 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.
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