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Ferroelectric-assisted charge carrier separation over Bi2MoO6 nanosheets for photocatalytic dye degradation

机译:Bi2MoO6纳米片上的铁电辅助电荷载流子分离用于光催化染料降解

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摘要

Low energy conversion efficiency from the absorbed photon to the catalytic species remains a major obstacle for the real application of photocatalysis. In recent years, the introduction of a built-in electric field has proved to be impactful in facilitating the photoinduced charge separation, among which, ferroelectric polarization is highly recommended by getting rid of mechanical stresses. Developing ferroelectrics directly as photoactive semiconductors is promising in view of the synergistic catalytic enhancement. Therefore, Bi2MoO6 nanosheets with ultrathin layered structure (<10 nm) and abundant oxygen vacancies were synthesized through the hydrothermal method. The two-dimensional nanostructure created more active sites and a convenient polarization condition. Subsequently, corona poling was applied on the Bi2MoO6 nanosheets, which can significantly accelerate the 100 degradation rate of RhB from 50 to 20 min, surpassing that of metal-free photocatalysts. The combined effect of semiconductor, ferroelectric polarization, oxygen vacancies, and nano-layered structure offers new strategies for designing multifield coupling catalysts, providing insights into the regulation of charge carrier dynamics.
机译:吸收的能量转换效率低光子催化物种仍然是主要的障碍的实际应用光催化作用。内建电场的证明有效的促进光诱导电荷分离,其中,铁电体极化是高度推荐的摆脱的机械压力。直接作为光敏半导体有前途的协同催化增强。超薄层状结构(< 10 nm)和丰富的氧空位是通过合成的热液的方法。纳米结构创造了更积极的网站和一个方便的极化状态。电晕极化Bi2MoO6应用nanosheets,可以显著加快RhB的100%的降解率50 - 20分钟,超过了不含金属的论文的。半导体、铁电极化、氧气职位空缺,提供了新的材料和结构multifield耦合的设计策略催化剂,提供见解的监管电荷载体动力学。

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