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Constructing the Cu2O@Au/Cu2O integrated heterostructure cooperated with LSPR effect for enhanced photocatalytic performance via a three-in-one synergy

JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY [2024]
Bo Ma, Qian Xu, Huajun Yao, Yalin Chen, Yiyang Wang, Yunfei Yang, Hongfang Shen, Youjun Lu
ABSTRACT

As a promising strategy, Localized surface plasmon resonance (LSPR) is applied to improve the efficiency of metal–semiconductor photocatalysts. However, current research have focused on maximizing the LSPR effect in a single structure, rather than the simultaneous consideration of the synergy between integrated structural characteristics and LSPR effect. Here we designed an integrated structure of Cu 2 O@Au/Cu 2 O heterostructure particles (HPs), which were provided with both the core–shell heterostructure (Cu 2 O@Au) and the inter-embedded heterostructure (Au/Cu 2 O). Cu 2 O@Au/Cu 2 O HPs showed much enhanced photocatalytic performance than pure Cu 2 O and other heterostructures with single structural characteristics. Experimental characterization and theoretical simulation confirm that the integrated heterostructure follows the three-in-one synergy, which include the LSPR effect of Au nanoparticles, the light scattering based on core–shell heterostructure, and the effective charge separation based on inter-embedded heterostructure. The concept of integrated heterostructure cooperated with LSPR effect provides a new strategy to design future catalysts.

MATERIALS

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