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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Nanostructured titanium dioxide coatings prepared by Aerosol Assisted Chemical Vapour Deposition (AACVD)
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Nanostructured titanium dioxide coatings prepared by Aerosol Assisted Chemical Vapour Deposition (AACVD)

机译:由气溶胶辅助化学气相沉积(AACVD)制备的纳米结构钛二氧化钛涂层

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Titanium dioxide is a compound of great interest, due to its functional properties; one of its most important uses is as a photocatalyst. TiO2 coatings can be deposited using different techniques. Aerosol Assisted Chemical Vapour Deposition (AACVD) is particularly interesting, as high temperature or pressure are not necessary to generate the gaseous precursors. Furthermore, by carefully choosing the deposition conditions (i.e. deposition temperature, solvent), it is possible to obtain deposits with different morphology and, consequently, different functional properties. In this paper we present the synthesis of titanium dioxide coatings with AACVD using complexes between titanium isopropoxide (TIPP) and acetyl acetone (acac) as precursors. Deposition experiments were performed using different ratios of TIPP to acac, to assess the effect on the composition of the coatings, their morphology and photocatalytic activity. Results showed that the use of acac led to nanostructured titanium dioxide (nanoparticles of about 10 - 25 nm diameter). Raman analysis showed the presence of both anatase and ruffle phases. XPS analysis indicated the presence of residual carbonaceous species in the coatings; despite this, they displayed photocatalytic properties similar or superior to AACVD films without carbon. Photocatalytic tests, performed measuring the Formal Quantum Efficiency (FQE) and the Formal Quantum Yield (FQY) in the degradation of resazurin, showed that a acac:TIPP ratio equal to 1 led to the material with the highest performance, as the FQE value was about three times higher than that for the coating prepared with TIPP alone. Overall the complexes between TIPP and acac are promising precursors for the AACVD technique, leading to nanostructured coatings with enhanced performance.
机译:二氧化钛是一种很大兴趣的化合物,因为其功能性质;其中一个最重要的用途是光催化剂。可以使用不同的技术沉积TiO2涂层。气溶胶辅助化学气相沉积(AACVD)特别有趣,因为不需要高温或压力来产生气态前体。此外,通过仔细选择沉积条件(即沉积温度,溶剂),可以获得具有不同形态学的沉积物,并且因此,不同的功能性质。本文使用钛等丙氧化钛(TIPP)和乙酰基丙酮(ACAC)作为前体的络合物,介绍了用AACVD的二氧化钛涂层的合成。使用Tipp的不同比例进行沉积实验,以评估对涂层组成的影响,它们的形态和光催化活性。结果表明,使用ACAC LED纳米结构钛二氧化钛(直径约10-25nm的纳米颗粒)。拉曼分析显示锐钛矿和荷叶序的存在。 XPS分析表明涂层中存在残留的碳质物质;尽管如此,它们显示出相似或优于无碳的AacVD薄膜的光催化性质。测量正式量子效率(FQE)和正式量子产量(FQY)的光催化试验表明,ACAC:TIPP比率等于1导致具有最高性能的材料,因为FQE值是最高的大约三倍高于单独用Tipp制备的涂层。总体而言,TIPP和ACAC之间的复合物是AACVD技术的前体,导致纳米结构涂层具有增强的性能。

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