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新型负载铂铋合金的 KTaNbO 复合光催化剂用于高效氮到铵的转化。

Novel platinum-bismuth alloy loaded KTaNbO composite photocatalyst for effective nitrogen-to-ammonium conversion.

机构信息

Department of Materials Science and Engineering, Zhejiang Normal University, Yingbin Road 688, Jinhua 321004, China.

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Institute of Physical Chemistry, Zhejiang Normal University, Yingbin Road 688, Jinhua 321004, China.

出版信息

J Colloid Interface Sci. 2022 Jul 15;618:362-374. doi: 10.1016/j.jcis.2022.03.096. Epub 2022 Mar 23.

Abstract

A novel heterojunction composite BiPt/KTaNbO (KTN) was designed and synthesized through a combination of hydrothermal and precipitation procedures. Bi and Pt contents were optimized. The best 1 %Bi-0.25 %Pt/KTN sample presented better photocatalytic performance in ammonia synthesis than KTN, 1 %Bi/KTN, and 0.25 %Pt/KTN. Under simulated sunlight, the NH generation rate of the best BiPt/KTN reached 6.3 times that of pure KTN. X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and transmission electron microscopy (TEM) analysis revealed that BiPt alloy nanoparticles were formed and decorated on the surface of KTN nanocubes. The PtBi alloy provided an appropriate Schottky barrier with a height between those of Pt/KTN and Bi/KTN. The barrier can efficiently capture photogenerated charge carriers while also preventing their backflow and recombination. Thus, the PtBi/KTN presented the best capability in charge separation, thereby displaying the highest photocatalytic activity in the N-to-NH reaction. Additionally, the loaded BiPt alloy also broadened the photoresponse of KTN to the visible light region via its surface plasmon resonance effect, which was another reason for the increased photoactivity. This study not only provided a potential photocatalyst for photocatalytic nitrogen fixation but also showed new ideas for the design of highly efficient catalysts via bimetal alloy modification.

摘要

通过水热和沉淀相结合的方法设计并合成了一种新型的异质结复合材料 BiPt/KTaNbO(KTN)。优化了 Bi 和 Pt 的含量。最佳的 1%Bi-0.25%Pt/KTN 样品在氨合成方面的光催化性能优于 KTN、1%Bi/KTN 和 0.25%Pt/KTN。在模拟太阳光下,最佳 BiPt/KTN 的 NH3 生成速率是纯 KTN 的 6.3 倍。X 射线衍射(XRD)、X 射线光电子能谱(XPS)和透射电子显微镜(TEM)分析表明,BiPt 合金纳米颗粒形成并装饰在 KTN 纳米立方体的表面。PtBi 合金提供了一个适当的肖特基势垒,其高度介于 Pt/KTN 和 Bi/KTN 之间。该势垒可以有效地捕获光生载流子,同时防止它们的回流和复合。因此,PtBi/KTN 在电荷分离方面表现出最佳的能力,从而在 N 到 NH3 的反应中表现出最高的光催化活性。此外,负载的 BiPt 合金也通过其表面等离子体共振效应拓宽了 KTN 对可见光区域的光响应,这也是光活性增加的另一个原因。本研究不仅为光催化固氮提供了一种潜在的光催化剂,而且通过双金属合金修饰为设计高效催化剂提供了新的思路。

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