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Laser irradiation in water for the novel scalable synthesis of black TiOx photocatalyst for environmental remediation

机译:水中激光辐照可用于环境修复的新型可扩展的黑色TiOx光催化剂的合成

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摘要

Since 1970, TiO2 photocatalysis has been considered a possible alternative for sustainable water treatment. This is due to its material stability, abundance, nontoxicity and high activity. Unfortunately, its wide band gap (≈3.2 eV) in the UV portion of the spectrum makes it inefficient under solar illumination. Recently, so-called “black TiO2” has been proposed as a candidate to overcome this issue. However, typical synthesis routes require high hydrogen pressure and long annealing treatments. In this work, we present an industrially scalable synthesis of TiO2-based material based on laser irradiation. The resulting black TiOx shows a high activity and adsorbs visible radiation, overcoming the main concerns related to the use of TiO2 under solar irradiation. We employed a commercial high repetition rate green laser in order to synthesize a black TiOx layer and we demonstrate the scalability of the present methodology. The photocatalyst is composed of a nanostructured titanate film (TiOx) synthetized on a titanium foil, directly back-contacted to a layer of Pt nanoparticles (PtNps) deposited on the rear side of the same foil. The result is a monolithic photochemical diode with a stacked, layered structure (TiOx/Ti/PtNps). The resulting high photo-efficiency is ascribed to both the scavenging of electrons by Pt nanoparticles and the presence of trap surface states for holes in an amorphous hydrogenated TiOx layer.
机译:自1970年以来,TiO2光催化被认为是可持续水处理的一种可能替代方法。这是由于其材料的稳定性,丰度,无毒和高活性。不幸的是,它在光谱的紫外线部分的宽带隙(≈3.2eV)使其在日光照射下效率低下。近来,已经提出所谓的“黑色TiO 2”作为克服该问题的候选。但是,典型的合成路线需要高氢气压力和长时间的退火处理。在这项工作中,我们介绍了基于激光辐照的TiO2基材料的工业可扩展合成。所得黑色TiOx表现出高活性并吸收可见光,从而克服了与在太阳辐射下使用TiO2有关的主要问题。为了合成黑色的TiOx层,我们使用了商业化的高重复频率的绿色激光,并且证明了本方法的可扩展性。光催化剂由合成在钛箔上的纳米结构钛酸酯膜(TiOx)组成,钛膜直接背向接触沉积在同一箔背面的Pt纳米颗粒(PtNps)层。结果是具有堆叠的层状结构(TiOx / Ti / PtNps)的单片光化学二极管。产生的高光效率归因于Pt纳米粒子对电子的清除和非晶态氢化TiOx层中空穴的陷阱表面态的存在。

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