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氨蒸汽诱导的介孔TiO溶胶-凝胶涂层的拟态转变

Ammonia Vapor-Induced Pseudomorphic Transformation of Mesoporous TiO Sol-Gel Coatings.

作者信息

Bors Adrienn Márta, Madarász János, Nagy Norbert, Rácz Adél Sarolta, Sáfrán György, Olasz Dániel, Hórvölgyi Zoltán, Albert Emőke

机构信息

Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest 1111, Hungary.

Department of Inorganic and Analytical Chemistry, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest 1111, Hungary.

出版信息

ACS Omega. 2025 Jul 28;10(31):35029-35042. doi: 10.1021/acsomega.5c04483. eCollection 2025 Aug 12.

Abstract

This study reports the structural rearrangement of TiO sol-gel coatings via aqueous ammonia vapor-induced pseudomorphic transformation. The coatings were applied to glass, silica-coated glass, and silica-coated silicon substrates. The transformation was initiated by aging the freshly deposited coatingsstill containing the molecular template Pluronic P123in an aqueous ammonia vapor atmosphere, resulting in significant reorganization of the primarily formed structure. Compared to aqueous vapor treatment for 4 days, the ammonia-based approach was more effective in enhancing optical transmittance, yielding a 1.25% higher average increase after just 4 h. The transformation led to notable changes in material properties: the monolayer coatings exhibited increased open porosity (from 38% to 55%), higher thickness (from 130 to 205 nm), and a reduced specific surface area (from 713 m/cm to 392 m/cm). Additionally, a slight increase in pore radius (from 5.6 to 6.6 nm) was observed. While the photocatalytic activity decreased under both UV and visible light due to reduced surface area, the improved optical performance highlights the potential of aqueous ammonia vapor treatment as a powerful tool for tailoring the structure and functionality of mesoporous TiO coatings.

摘要

本研究报道了通过氨水蒸气诱导的赝同形转变实现TiO溶胶-凝胶涂层的结构重排。这些涂层被应用于玻璃、二氧化硅涂层玻璃和二氧化硅涂层硅衬底上。通过在氨水蒸气气氛中对刚沉积的涂层(仍含有分子模板普朗尼克P123)进行老化处理引发转变,导致最初形成的结构发生显著重组。与水蒸气处理4天相比,基于氨的方法在提高光学透过率方面更有效,仅4小时后平均增加率就高出1.25%。这种转变导致材料性能发生显著变化:单层涂层的开孔率增加(从38%增至55%),厚度增加(从130纳米增至205纳米),比表面积减小(从713平方米/平方厘米减至392平方米/平方厘米)。此外,观察到孔径略有增加(从5.6纳米增至6.6纳米)。虽然由于表面积减小,在紫外光和可见光下光催化活性均降低,但光学性能的改善突出了氨水蒸气处理作为一种强大工具来定制介孔TiO涂层结构和功能的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbe9/12355428/295bac2a39f9/ao5c04483_0001.jpg

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