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首页> 外文期刊>Applied Surface Science >Polarization-induced selective growth of Au islands on single-domain ferroelectric PbTiO_3 nanoplates with enhanced photocatalytic activity
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Polarization-induced selective growth of Au islands on single-domain ferroelectric PbTiO_3 nanoplates with enhanced photocatalytic activity

机译:极化诱导的单域铁电PbTiO_3纳米板上具有增强光催化活性的金岛的选择性生长

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In this work, heterostructured Au@PbTiO3 nanoplates were synthesized successfully via a simple hydrothermal process. It is revealed that Au islands with the size of 8-20 nm selectively deposited on the positively polarized surface of the single-crystal and single-domain PbTiO3 nonaplates. The composite demonstrates an efficient photocatalytic performance toward degradation of Rhodamine B (RhB) solution under UV light The possible mechanism is that the ferroelectric polarization efficiently separates the photogenerated electrons and holes and reduces the recombination of them. Then, the ferroelectric polarization field urged the electrons concentrated on the positively polarized surface and then transformed oxygen into superoxide radicals to enhance the photocatalytic activity. Recycled activity tests show that the heterostructured Au@PbTiO3 nanoplates would inhibit the photocorrosion behavior and provide high stability.
机译:在这项工作中,通过简单的水热过程成功地合成了异质结构的Au @ PbTiO3纳米板。结果表明,在单晶和单畴PbTiO3纳米晶的正极化表面上选择性沉积了8-20 nm的金岛。该复合材料对紫外光下若丹明B(RhB)溶液的降解表现出有效的光催化性能。可能的机理是铁电极化有效地分离了光生电子和空穴,并减少了它们的重组。然后,铁电极化场促使电子聚集在正极化表面上,然后将氧转化为超氧自由基,以增强光催化活性。循环活性测试表明,异质结构的Au @ PbTiO3纳米板将抑制光腐蚀行为并提供高稳定性。

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