Self-Assembled LaFeO3/ZnFe2O4/La2O3 Ultracompact Hybrids with Enhanced Piezo-Phototronic Effect for Oxygen Activation in Ambient Conditions

Lixuan Zhang, Kai Wang, Yanqi Jia, Liping Fang, Chen Han, Jiaquan Li, Zongping Shao, Xinyong Li, Jieshan Qiu, Shaomin Liu

科研成果: 期刊稿件文章同行评审

36 引用 (Scopus)

摘要

Piezoelectric polarization portrays a promising technology to regulate the photogenerated charge carrier separation and transfer behaviors, and the design of multifunctional catalysts with piezo-phototronic effect is a key step. One strategy is to prepare a composite catalyst combining the ideal properties from each individual component. Herein, a facial dopant-induced self-assembling strategy is reported to fabricate an ultracompact nanocomposite (LaFeO3/ZnFe2O4/La2O3) with enhanced efficiency for piezo-photocatalysis. The composite is synthesized at 800 °C from the one-pot method, thus the self-constructed interface is created during multi-phase formation, providing the intimate grain-to-grain contact between the semiconductive LaFeO3 and piezoelectric ZnFe2O4/La2O3 phases. In such a composite, a synergistic effect for oxygen activation is realized via the effective manipulation of the photogenerated charge carrier separation and spatial transportation through the vibration-created piezopotential. A high piezoelectric coefficient (d33) up to 826 pm V−1 and a superior H2O2 yield of 403 µmol g−1 h−1 (in open air and pure water) are achieved on the optimized composite, outperforming most of the reported lead-free piezo-photocatalyst. The ultracompact composite is very robust without any decay in H2O2-delivering capability after many cyclic tests. This study provides a universal strategy for the rational design of high-performance piezo-photocatalysts.

源语言英语
文章编号2205121
期刊Advanced Functional Materials
32
45
DOI
出版状态已出版 - 3 11月 2022
已对外发布

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