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高度有序、可及且具有纳米晶结构的介孔 TiO₂ 薄膜在透明导电基底上。

Highly ordered, accessible and nanocrystalline mesoporous TiO₂ thin films on transparent conductive substrates.

机构信息

Gerencia Química, Centro Atómico Constituyentes, Comisión Nacional de Energía Atómica, Av. Gral. Paz 1499, B1650KNA, San Martín, Buenos Aires, Argentina.

出版信息

ACS Appl Mater Interfaces. 2012 Aug;4(8):4320-30. doi: 10.1021/am300990p. Epub 2012 Aug 3.

Abstract

Highly porous (V(mesopore) = 25-50%) and ordered mesoporous titania thin films (MTTF) were prepared on ITO (indium tin oxide)-covered glass by a fast two-step method. The effects of substrate surface modification and thermal treatment on pore order, accessibility and crystallinity of the MTTF were systematically studied for MTTF deposited onto bare and titania-modified ITO. MTTF exposed briefly to 550 °C resulted in highly ordered films with grid-like structures, enlarged pore size, and increased accessible pore volume when prepared onto the modified ITO substrate. Mesostructure collapse and no significant change in pore volume were observed for MTTF deposited on bare ITO substrates. Highly crystalline anatase was obtained for MTTF prepared on the modified-ITO treated at high temperatures, establishing the relationship between grid-like structures and titania crystallization. Photocatalytic activity was maximized for samples with increased crystallization and high accessible pore volume. In this manner, a simple way of designing materials with optimized characteristics for optoelectronic applications was achieved through the modification of the ITO surface and a controlled thermal treatment.

摘要

高度多孔(V(mesopore) = 25-50%)和有序介孔二氧化钛薄膜(MTTF)通过快速两步法在 ITO(氧化铟锡)覆盖的玻璃上制备。系统研究了基底表面修饰和热处理对 MTTF 的孔有序性、可及性和结晶度的影响,研究了沉积在裸 ITO 和二氧化钛修饰的 ITO 上的 MTTF。将 MTTF 短时间暴露于 550°C 下,在修饰的 ITO 基底上制备时,会得到具有网格状结构、增大的孔径和增加的可及孔体积的高度有序薄膜。在裸 ITO 基底上沉积的 MTTF 观察到介孔结构塌陷和孔体积无明显变化。在经过高温处理的修饰-ITO 上制备的 MTTF 获得了高度结晶的锐钛矿,建立了网格状结构与二氧化钛结晶之间的关系。对于结晶度提高和高可及孔体积的样品,光催化活性最大化。通过修饰 ITO 表面和控制热处理,以这种简单的方式实现了具有优化光电应用特性的材料的设计。

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