Hybrid membranes for wastewater treatment based on polymer-coated barium titanate nanoparticles.

IF 9.4 1区 化学 Q1 CHEMISTRY, PHYSICAL Journal of Colloid and Interface Science Pub Date : 2024-12-06 DOI:10.1016/j.jcis.2024.12.013
Mirko Maturi, María de la Mata, Mauro Comes Franchini, Sergio I Molina, Alberto Sanz de León
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Abstract

In this work we present a series of hybrid membranes with piezocatalytic properties for wastewater treatment. For this, four types of barium titanate nanoparticles (BTO NPs) with different coatings were synthesized. These NPs were embedded in a polystyrene (PS) matrix to fabricate hybrid, porous membranes using the breath figures (BF) technique. In-depth electron microscopy analysis showed that the NPs with an amphiphilic coating composed of PS (hydrophobic, compatibilizing them with the PS matrix) and hydrocaffeic acid (HCA) (hydrophilic, favoring the formation of ordered pores) led to the formation of honeycomb-patterned films where these NPs are selectively placed inside of the pores for a wide range of concentrations, from 5 to 100 wt%. We demonstrated the potential of these membranes in piezocatalysis applications, through proof-of-concept studies of methylene blue (MB) degradation in aqueous solutions.

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基于聚合物涂层钛酸钡纳米颗粒的废水处理混合膜。
在这项工作中,我们提出了一系列具有压催化特性的混合膜,用于废水处理。为此,我们合成了四种具有不同涂层的钛酸钡纳米粒子(BTO NPs)。这些 NPs 被嵌入聚苯乙烯(PS)基质中,利用呼吸数字(BF)技术制成混合多孔膜。深入的电子显微镜分析表明,由 PS(疏水性,使其与 PS 基质相容)和氢咖啡酸(亲水性,有利于形成有序的孔隙)组成的两亲涂层的 NPs 能形成蜂窝状的薄膜,在 5 到 100 wt% 的浓度范围内,这些 NPs 被选择性地置于孔隙内。通过对水溶液中亚甲基蓝(MB)降解的概念验证研究,我们证明了这些膜在压催化应用中的潜力。
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来源期刊
CiteScore
16.10
自引率
7.10%
发文量
2568
审稿时长
2 months
期刊介绍: The Journal of Colloid and Interface Science publishes original research findings on the fundamental principles of colloid and interface science, as well as innovative applications in various fields. The criteria for publication include impact, quality, novelty, and originality. Emphasis: The journal emphasizes fundamental scientific innovation within the following categories: A.Colloidal Materials and Nanomaterials B.Soft Colloidal and Self-Assembly Systems C.Adsorption, Catalysis, and Electrochemistry D.Interfacial Processes, Capillarity, and Wetting E.Biomaterials and Nanomedicine F.Energy Conversion and Storage, and Environmental Technologies
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