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Polydopamine-Coated Porous Substrates as a Platform for Mineralized beta-FeOOH Nanorods with Photocatalysis under Sunlight

机译:聚多巴胺涂层多孔基质作为矿化β-FeOOH纳米棒的平台,在阳光下具有光催化作用

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摘要

Immobilization of photo-Fenton catalysts on porous materials is crucial to the efficiency and stability for water purification. Here we report polydopamine (PDA)-coated porous substrates as a platform for in situ mineralizing beta-FeOOH nanorods with enhanced photo catalytic performance under sunlight. The PDA coating plays multiple roles as an adhesive interface, a medium inducing mineral generation, and an electron transfer layer. The mineralized beta-FeOOH nanorods perfectly wrap various porous substrates and are stable on the substrates that have a PDA coating. The immobilized beta-FeOOH nanorods have been shown to be efficient for degrading dyes in water via a photo-Fenton reaction. The degradation efficiency reaches approximately 100% in 60 min when the reaction was carried out with H2O2 under visible light, and it remains higher than 90% after five cycles. We demonstrate that the PDA coating promotes electron transfer to reduce the electron hole recombination rate. As a result, the beta-FeOOH nanorods wrapped on the PDA-coated substrates show enhanced photocatalytic performance under direct sunlight in the presence of H2O2. Moreover, this versatile platform using porous materials as the substrate is useful in fabricating beta-FeOOH nanorods-based membrane reactor for wastewater treatment.
机译:将光芬顿催化剂固定在多孔材料上对于水净化的效率和稳定性至关重要。在这里,我们报告聚多巴胺(PDA)涂层多孔基材作为原位矿化β-FeOOH纳米棒的平台,具有增强的日光下光催化性能。 PDA涂层起着粘合界面,诱导矿物生成的介质和电子传输层的作用。矿化的β-FeOOH纳米棒完美包裹各种多孔基材,并且在具有PDA涂层的基材上稳定。已证明固定化的β-FeOOH纳米棒可通过光芬顿反应有效降解水中的染料。当与H2O2在可见光下进行反应时,降解效率在60分钟内达到约100%,并且在五个循环后仍保持高于90%。我们证明了PDA涂层可以促进电子转移,从而降低电子空穴的复合率。结果,包裹在PDA涂层基材上的β-FeOOH纳米棒在H2O2存在的直射阳光下显示出增强的光催化性能。此外,这种使用多孔材料作为基材的通用平台可用于制造用于废水处理的基于β-FeOOH纳米棒的膜反应器。

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