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3D heterostructured Ti-based Bi2MoO6/Pd/TiO2 Photocatalysts for High-Efficiency Solar Light Driven Photoelectrocatalytic Hydrogen Generation

DOI:10.1021/acsaem.8b01602 期刊:ACS Applied Energy Materials 出版年份:2018 更新时间:2025-09-04 15:30:14
摘要: Hydrogen fuel generation using solar light via photoelectrochemical (PEC) methods can help meet growing global energy demands and decrease environmental pollution. The key to efficient PEC hydrogen production is the synthesis of solar light driven photoelectrodes with efficient charge carrier separation. Here, we designed and prepared a ternary Bi2MoO6/Pd/TiO2 photoelectrode composed of Bi2MoO6 nanosheets, Pd nanoparticles (NPs) and TiO2 nanotube arrays (NTAs) on a Ti substrate using electrochemical methods. This novel photoelectrode had good visible light absorbance and significantly improved PEC hydrogen production rates (~5 and > 15 times higher under UV-vis and visible light irradiation, respectively, compared with TiO2 NTAs). The interfacial charge transfer mechanism of Bi2MoO6/Pd/TiO2 NTAs was comprehensively studied by comparing its PEC and photoelectrocatalytic performance with other TiO2 NTAs (i.e. Pd/TiO2 NTAs, Bi2MoO6/TiO2 NTAs and Pd/Bi2MoO6/TiO2 NTAs). For Bi2MoO6/Pd/TiO2 NTAs, Pd NPs homogeneously dispersed across the inside and outside of TiO2 nanotube walls helped to tightly anchor Bi2MoO6 nanosheets onto the TiO2 surface, forming a ternary 3D heterostructure. This structure facilitated interfacial electron injection from Bi2MoO6 to TiO2, accelerating the separation of the photogenerated electron-hole pairs. And significantly enhanced the photocurrent response and hydrogen production rate were achieved compared with other TiO2 NTAs. This 3D ternary semiconductor/metal/semiconductor heterojunction provides a viable approach for designing and synthesizing highly efficient novel photocatalysts that can effectively utilize solar energy.
作者: Siwan Xiang,Zeyang Zhang,Zhi Wu,Lan Sun,Petar Radjenovic,He Ren,Changjian Lin,Zhongqun Tian,Jianfeng Li
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To design and prepare a ternary Bi2MoO6/Pd/TiO2 photoelectrode for high-efficiency solar light driven photoelectrocatalytic hydrogen generation, addressing the need for renewable, non-polluting, clean energy sources.

The 3D heterostructured Ti-based Bi2MoO6/Pd/TiO2 photocatalysts demonstrated significantly improved photoelectrocatalytic activities and hydrogen production rates under both UV-vis and visible light irradiation. The design and construction of this ternary semiconductor/metal/semiconductor heterojunction provide a viable approach for developing novel highly efficient photocatalysts for effectively utilizing solar energy.

The study focuses on the synthesis and characterization of the ternary photoelectrode and its performance under controlled laboratory conditions. Potential limitations include scalability of the synthesis process and long-term stability under real-world operating conditions.

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