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基于 Au-TiO 和聚多巴胺协同作用的光催化纳米复合膜的仿生合成及其在可见光下降解四环素的研究。

Bioinspired Synthesis of Photocatalytic Nanocomposite Membranes Based on Synergy of Au-TiO and Polydopamine for Degradation of Tetracycline under Visible Light.

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University , Zhenjiang 212013, P. R. China.

School of Chemistry, Jilin Normal University , Siping 136000, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 19;9(28):23687-23697. doi: 10.1021/acsami.7b04902. Epub 2017 Jul 6.

Abstract

A bioinspired photocatalytic nanocomposite membrane was successfully prepared via polydopamine (pDA)-coated poly(vinylidene fluoride) (PVDF) membrane, as a secondary platform for vacuum-filtrated Au-TiO nanocomposites, with enhanced photocatalytic activity. The degradation efficiency of Au-TiO/pDA/PVDF membranes reached 92% when exposed to visible light for 120 min, and the degradation efficiency of Au-TiO/pDA/PVDF membranes increased by 26% compared to that of Au-TiO powder and increased by 51% compared to that of TiO/pDA/PVDF nanocomposite membranes. The degradation efficiency remained about 90% after five cycle experiments, and the Au-TiO/pDA/PVDF nanocomposite membranes showed good stability, regeneration performance, and easy recycling. The pDA coating not only served as a bioadhesion interface to improve the bonding force between the catalyst and the membrane substrate but also acted as a photosensitizer to broaden the wavelength response range of TiO, and the structure of Au-TiO/pDA/PVDF also improves the transfer rate of photogenerated electrons; the surface plasmon resonance effect of Au also played a positive role in improving the activity of the catalyst. Therefore, we believe that this study opens up a new strategy in preparing the bioinspired photocatalytic nanocomposite membrane for potential wastewater purification, catalysis, and as a membrane separation field.

摘要

一种仿生化光催化纳米复合膜通过聚多巴胺(pDA)涂覆的聚偏二氟乙烯(PVDF)膜成功制备,作为真空过滤 Au-TiO 纳米复合材料的二次平台,具有增强的光催化活性。当 Au-TiO/pDA/PVDF 膜在可见光下暴露 120 分钟时,降解效率达到 92%,与 Au-TiO 粉末相比,降解效率提高了 26%,与 TiO/pDA/PVDF 纳米复合膜相比,降解效率提高了 51%。经过五次循环实验后,降解效率仍保持在 90%左右,Au-TiO/pDA/PVDF 纳米复合膜具有良好的稳定性、再生性能和易于回收利用。pDA 涂层不仅作为生物附着界面,提高了催化剂与膜基底之间的结合力,而且作为光敏剂拓宽了 TiO 的波长响应范围,Au-TiO/pDA/PVDF 的结构也提高了光生电子的转移速率;Au 的表面等离子体共振效应也对提高催化剂的活性起到了积极作用。因此,我们相信这项研究为潜在的废水净化、催化和膜分离领域制备仿生光催化纳米复合膜开辟了新的策略。

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