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Nanolimes doped with quantum dots for stone consolidation assessment

机译:掺有量子点的纳米胶水用于石材固结评估

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Currently, the application of consolidation treatments based on nanolimes (Ca(OH)(2) nanoparticles) has become a common practice during the restoration of historical buildings. However, recent studies have showed that their effectiveness on stone materials is lower than expected. This result is due to the accumulation of nanolimes near the surface, which decreases their penetration depth into stone matrix and, consequently, results in a low restoration effectiveness.This research is focused on a new nanocomposite based on Ca(OH)(2) nanoparticles doped with ZnO quantum dots whose fluorescence shows the real penetration of the nanomaterial into the stone matrices and allows us to study the affinity between nanolimes and the solvent used in the application in order to improve the penetration of the treatment into stones. Different mixtures of solvents have been probed to improve the penetration depth by analysing their kinetic stabilities and using thin-layer chromatography to evaluate their capacity to transport the nanolimes. Furthermore, a new support for thin-layer chromatography based on mortar has been designed, which has the advantage of having the same chemical composition as the limestones. Moreover, the effectiveness of the treatments was studied on limestones from Puerto de Santa Maria and Espera (Spain), which have been widely used in historical and contemporary buildings in the southwest of Spain.Nanolimes doped with ZnO quantum dots allow one to choose the optimal solvents for each kind of stone based on their fluorescence from UV radiation. Additionally, the fluorescence of the quantum dots could be used as an indicator of the consolidated areas for cultural heritage applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:目前,基于纳米石灰(Ca(OH)(2)纳米颗粒)的固结处理的应用已成为历史建筑修复过程中的一种普遍做法。但是,最近的研究表明,它们在石材上的功效低于预期。该结果是由于纳米石灰在表面附近的积累,从而降低了其在石材基质中的渗透深度,因此导致修复效率较低。本研究的重点是基于Ca(OH)(2)纳米颗粒的新型纳米复合材料掺杂有ZnO量子点,其荧光显示纳米材料真正渗透到石材基质中,这使我们能够研究纳米石灰与应用中所用溶剂之间的亲和力,以提高处理剂对石材的渗透性。通过分析溶剂的动力学稳定性并使用薄层色谱法评估其传输纳米石灰的能力,已探究了不同的溶剂混合物以提高渗透深度。此外,已经设计了一种用于基于灰浆的薄层色谱的新载体,其优点是具有与石灰石相同的化学组成。此外,还研究了来自西班牙圣玛丽亚港和西班牙埃斯佩拉的石灰石的治疗效果,这些石灰石已广泛用于西班牙西南部的历史和现代建筑中。掺杂有ZnO量子点的纳诺胺使人们可以选择最佳根据紫外线辐射产生的荧光对每种石材使用溶剂。另外,量子点的荧光可以用作文化遗产应用合并区域的指示。 (C)2018 Elsevier Ltd.保留所有权利。

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