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Smart ZnO decorated optimized engineering materials for water purification under natural sunlight

机译:智能ZnO装饰优化的工程材料,用于自然阳光下的水净化

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Developing and designing smart civil engineering materials for environmental depollution in our daily life is a major issue. ZnO nanostructures implemented onto civil engineering material surfaces by low cost hydrothermal growth could be one of the most promising solutions, and already showed a good water purification efficiency by photocatalysis under UV light. Nevertheless, there are two main factors to work out in order to simplify and intensify the photocatalyst production on engineering materials. The first one is the reduction of the growth time. The second one is the use of sunlight, which is the most abundant, clean, and renewable light source available. However, reducing the growth time might have an impact on the photocatalytic efficiency due to the surface/volume ratio modification. In this work, a short and efficient hydrothermal synthesis (2 h or 1 h 30 min vs 4 h) was used to grow ZnO nanostructures directly on non-conventional substrates such as tiling and concrete, demonstrating an excellent photocatalytic activity for organic pollutant degradation in water under natural sunlight, even during cloudy days. Decreasing the growth time showed no significant influence on tiling samples and even increased their photocatalytic efficiency until the optimal value obtained with a growth time of 2 h. A strong impact of the shorter growth time was observed on concrete samples, as reducing the growth time leads to complex ZnO nanosheet structures with a lower gap value (3.11 eV for 1 h 30 min against 3.17 eV for 4 h) due to a possible influence of the surface pH value and the complex chemical composition of concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在我们日常生活中开发和设计用于环境缺失的智能土木工程材料是一个主要问题。通过低成本水热生长实施到土木工程材料表面上的ZnO纳米结构可能是最有前途的解决方案之一,并且已经通过紫外线下的光催化显示出良好的水净化效率。尽管如此,有两个主要因素来锻炼,以简化和加强工程材料上的光催化剂生产。第一个是减少生长时间。第二个是使用阳光,这是最丰富,清洁,可再生的光源可用。然而,降低生长时间可能对由于表面/体积比改性引起的光催化效率产生影响。在这项工作中,使用短且有效的水热合成(2 H或1 H 30min Vs 4 H),用于直接在诸如平铺和混凝土的非常规基材上直接生长ZnO纳米结构,证明了用于有机污染物降解的优异的光催化活性在自然阳光下的水,即使在阴天期间。减少生长时间对瓦片样品没有显着影响,甚至增加了它们的光催化效率,直到使用2小时的生长时间获得的最佳值。在混凝土样品上观察到较短的生长时间的强烈影响,因为降低了生长时间,由于可能的影响,降低了较低的ZnO纳米片结构,其具有较低的间隙值(3.11eV为3.17eV,每隔4小时,每4小时持续3.17eV)混凝土的表面pH值与复杂化学成分。 (c)2020 elestvier有限公司保留所有权利。

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