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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Laser-Synthesized Rutile TiO2 with Abundant Oxygen Vacancies for Enhanced Solar Water Evaporation
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Laser-Synthesized Rutile TiO2 with Abundant Oxygen Vacancies for Enhanced Solar Water Evaporation

机译:激光合成的金红石TiO2,具有丰富的氧空位,用于增强太阳能水蒸发

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摘要

Titanium dioxide (TiO2) as a common photothermal material usually faces with low photothermal conversion efficiency, mainly owing to the little utilization of visible (Vis) and near-infrared (NIR) light in the solar spectrum. Introducing oxygen vacancies is an effective strategy for narrowing its bandgap and thus enhancing the light absorption capacity. However, traditional approaches are always not energy-efficient or unable to create enough oxygen vacancies. Herein, laser ablation in liquid (LAL) was successfully employed to prepare rutile TiO2 nanoparticles (NPs) with abundant oxygen vacancies in one step, which were then assembled into the self-floating evaporator. Our experimental results demonstrate that the existence of oxygen vacancies narrows the bandgap and forms conduction band tail states, leading to significant improvements of light absorbance and photothermal conversion efficiency. Moreover, the light trapping structure of nickel foam (NF) support also contributes to the high solar absorption of laser TiO2 (L-TiO2)/NF. Eventually, the L-TiO2/NF evaporator realizes an excellent water evaporation rate of 1.25 kg m(-2) h(-1) and light-to-water evaporation efficiency of 78.5% under one-sun irradiation, which are both 1.81 times than those of commercial TiO2 (C-TiO2)/NF and even surpass those of most recently reported titanium oxide-based evaporators.
机译:二氧化钛(TiO 2)作为常见的光热材料通常具有低光热转换效率的面,主要是由于太阳光谱中可见(VI)和近红外(NIR)光的利用率很少。引入氧气空缺是缩小其带隙的有效策略,从而提高光吸收能力。然而,传统方法始终不节能或无法创造足够的氧气职位空缺。这里,成功地使用激光消融(LAL)中的液体(LAL)中的金红石TiO2纳米颗粒(NPS),在一个步骤中具有丰富的氧空位,然后组装到自漂浮蒸发器中。我们的实验结果表明,氧空位的存在缩小了带隙并形成导带尾部状态,从而显着改善了光吸收和光热转换效率。此外,镍泡沫(NF)支持的光捕获结构也有助于激光TiO2(L-TiO2)/ NF的高太阳能吸收。最终,L-TiO2 / NF蒸发器实现了1.25kg m(-2)h(-1)的优异的水蒸发速率,单阳照射下的78.5%的光到水蒸发效率,均为1.81倍而不是商业TiO2(C-TiO2)/ NF甚至超过最近报告的基于氧化钛的蒸发器的那些。

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