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In article number 2005345, Ranbo Yu, Dan Wang, and co‐workers successfully incorporate the advanced structural design to construct the La‐ and Rh‐ co‐doped SrTiO3 (STO:La/Rh) hollow multi‐shelled structures (HoMSs). The elevated visible light responsive photocatalytic water splitting performances give a promising prospect for HoMSs‐based materials in photocatalytic and photo related fields. With a...
La‐ and Rh‐co‐doped SrTiO3 (STO:La/Rh) hollow multishelled structures (HoMSs) are fabricated by adding La3+ and Rh3+ ions during the hydrothermal process of converting TiO2 HoMSs to STO HoMSs. STO:La/Rh HoMSs have successfully expanded the light absorption edge to 520 nm. Accompanied with the benefits of the unique hierarchical structure and relatively thin shells, STO:La/Rh HoMSs exhibit elevated...
Constructing hollow multi‐shelled structures (HoMSs) has a significant effect on promoting light absorption property of catalysts and enhancing their performance in solar energy conversion applications. A facile hydrothermal method is used to design the SrTiO3−TiO2 heterogeneous HoMSs by hydrothermal crystallization of SrTiO3 on the surface of the TiO2 HoMSs, which will realize a full coverage of...
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