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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Facile preparation of stable aqueous titania sols for fabrication of highly active TiO2 photocatalyst films
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Facile preparation of stable aqueous titania sols for fabrication of highly active TiO2 photocatalyst films

机译:制备稳定的二氧化钛溶胶的简便方法,用于制备高活性的TiO2光催化剂膜

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摘要

Highly stable aqueous titania sols were prepared via a facile process using titanium tetraisopropoxide in the co-existence of acetylacetone and acetic acid. Their co-existence efficiently suppressed the hydrolysis and condensation reaction of titanium tetraisopropoxide even in water, retaining the diameter of titania colloidal particles lower than 10 nm (average diameter d = ca. 4 nm). The titania sols possessed significantly high stability for more than 1 year and could be easily coated on various substrates such as quartz glass via a simple spin-coating method, forming highly homogeneous and transparent films. The calcinations of the coated films in the air at 600 degrees C produced densely packed anatase TiO2 particles; the diameter was retained below 50 nm even after the calcinations at 900 degrees C without phase transition to rutile, maintaining the fairly good transparency of the films. On the other hand, the TiO2 particles prepared on a quartz substrate from other precursors, such as titanium-peroxo-citrate complexes, were found to transform from anatase into the rutile phase at above 700 degrees C with a significant increase in the particle size up to ca. 200 nm. The TiO2 films prepared from the present aqueous titania sols exhibited higher activity for photo-induced surface superhydrophilicity under UV light irradiation than those prepared from other precursors.
机译:使用四异丙氧基钛,在乙酰丙酮和乙酸共存的情况下,通过简便的方法制备了高度稳定的二氧化钛溶胶。它们的共存即使在水中也能有效抑制四异丙氧基钛的水解和缩合反应,使二氧化钛胶体颗粒的直径保持在10 nm以下(平均直径d =约4 nm)。二氧化钛溶胶具有超过1年的极高稳定性,并且可以通过简单的旋涂方法轻松地涂覆在各种基材(例如石英玻璃)上,从而形成高度均匀且透明的薄膜。涂膜在600摄氏度的空气中煅烧,产生了紧密堆积的锐钛矿型TiO2颗粒;即使在900℃下煅烧之后,直径也保持在50nm以下,而没有相变变成金红石,从而保持了膜的相当好的透明度。另一方面,发现在石英衬底上由其他前体(如柠檬酸过氧钛配合物)制备的TiO2颗粒在700℃以上会从锐钛矿转变为金红石相,且粒径明显增加。至200纳米由本发明的二氧化钛水溶胶制备的TiO 2膜比由其他前体制备的TiO 2膜在紫外光照射下对光诱导的表面超亲水性表现出更高的活性。

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