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Electrochemically assisted deposition by local pH tuning: a versatile tool to generate ordered mesoporous silica thin films and layered double hydroxide materials

机译:通过局部pH调节进行电化学辅助沉积:生成有序介孔二氧化硅薄膜和层状双氢氧化物材料的多功能工具

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摘要

This review presents the interest of electrochemistry for the preparation of two families of porous materials (ordered mesoporous silica and layered double hydroxide), generated as thin films on solid electrode surfaces via an electrochemically assisted local pH tuning. The deposition mechanism is dependent on the target material. The driving force to get the ordered mesoporous silica thin films is the combination of electrochemical interfacial surfactant templating to the electro-assisted sol-gel deposition, leading to the growth of vertically aligned mesopore channels of surfactant-templated silica. The mechanism involved in the generation of layered double hydroxide (LDH) thin films is the electrochemically induced precipitation of the material by the electrogenerated hydroxide anions, which can be also applied to the formation of LDH-based composites. After a presentation of the materials that can be synthesized by the electrochemical manipulation of localized pH at electrode/solution interfaces, their characterization and applications are also briefly discussed.
机译:这项审查提出了电化学的兴趣,以制备两类多孔材料(有序介孔二氧化硅和层状双氢氧化物),通过电化学辅助局部pH调节在固体电极表面上形成薄膜。沉积机理取决于目标材料。获得有序介孔二氧化硅薄膜的驱动力是模板化电化学界面活性剂与电辅助溶胶-凝胶沉积的结合,从而导致了表面活性剂模板二氧化硅的垂直排列介孔通道的生长。层状双氢氧化物(LDH)薄膜的生成所涉及的机制是由电化学生成的氢氧根阴离子以电化学方式引起的材料沉淀,这也可用于形成基于LDH的复合材料。在介绍了可以通过电化学处理电极/溶液界面处的局部pH合成的材料后,还将简要讨论其表征和应用。

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