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Effect of titanium (IV) isopropoxide molarity on the crystallinity and photocatalytic activity of titanium dioxide thin film deposited via green sol–gel route

机译:异丙醇钛(IV)的摩尔浓度对通过绿色溶胶-凝胶法沉积的二氧化钛薄膜的结晶度和光催化活性的影响

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In this paper, the effect of titanium (IV) isopropoxide TTIP molarity on the crystallinity and TiO2thin film properties deposited via green sol–gel route was reported. The green sol–gel route is a pioneering approach for eco-friendly coating where solvent is not utilized in the sol formulation. This is in contrast to the common TiO2sol formulation where solvent is used despite the long term harmful the environment. TiO2solution with different TTIP molarity of 0.2M, 0.3M, 0.4M and 0.5M were utilized during coating deposition. Deposition were conducted for ten times using dip coating and treated at 500°C (1-h). The crystalline phases and phase content were characterized using X-ray diffraction (XRD) and reference intensity ratio (RIR) equation. Crystallites size was obtained by Scherrer's equation while coating morphologies was analyzed using scanning electron microscope (SEM). The photocatalytic activity was conducted by the degradation of methylene blue (MB) towards UV-light and visible light. At higher TTIP molarity (0.5M), higher crystallinity of mixed anatase (~17nm) and rutile (~29nm) phases were obtained along with homogeneous coating (cracking and visible pore). Also, higher MB degradation were obtained at UV-light (95%) and visible-light (86%) irradiation. In conclusion, higher TTIP molarity produced TiO2film with higher crystallinity, small crystallite size, cracking morphology thus contribute good performance in photocatalytic activity. Findings in this work shown that TiO2thin film deposition is possible conducted without the use of solvent through optimized formulation of only precursor, acid and water. This is beneficial for the environment sustainability.
机译:本文报道了异丙醇钛(IV)TTIP摩尔浓度对通过绿色溶胶-凝胶途径沉积的结晶度和TiO2薄膜性能的影响。绿色的溶胶-凝胶路线是一种环保涂料的开创性方法,这种涂料在溶胶配方中不使用溶剂。这与普通的TiO2sol配方相反,后者尽管长期对环境有害,但仍使用溶剂。在涂层沉积过程中,使用了TTIP摩尔比分别为0.2M,0.3M,0.4M和0.5M的TiO2溶液。使用浸涂进行沉积十次,并在500℃下处理(1-h)。使用X射线衍射(XRD)和参考强度比(RIR)方程表征了结晶相和相含量。通过Scherrer方程获得微晶尺寸,同时使用扫描电子显微镜(SEM)分析涂层形态。通过将亚甲基蓝(MB)降解为紫外线和可见光来进行光催化活性。在较高的TTIP摩尔浓度(0.5M)下,获得了锐钛矿混合晶相(〜17nm)和金红石相(〜29nm)以及较高的结晶度以及均匀的涂层(裂纹和可见孔)。同样,在紫外线(95%)和可见光(86%)照射下获得更高的MB降解。总之,较高的TTIP摩尔比产生的TiO 2膜具有较高的结晶度,较小的晶粒尺寸,裂化形态,因此在光催化活性方面具有良好的性能。这项工作的发现表明,仅通过优化前体,酸和水的配方,无需使用溶剂即可进行TiO2薄膜沉积。这有利于环境的可持续性。

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