首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Bombyx mori silk/titania/gold hybrid materials for photocatalytic water splitting: combining renewable raw materials with clean fuels
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Bombyx mori silk/titania/gold hybrid materials for photocatalytic water splitting: combining renewable raw materials with clean fuels

机译:用于光催化水分解的家蚕桑蚕丝/二氧化钛/金混合材料:将可再生原料与清洁燃料结合

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摘要

The synthesis, structure, and photocatalytic water splitting performance of two new titania (TiO2)/gold(Au)/Bombyx mori silk hybrid materials are reported. All materials are monoliths with diameters of up to ca. 4.5 cm. The materials are macroscopically homogeneous and porous with surface areas between 170 and 210 m2/g. The diameter of the TiO2 nanoparticles (NPs) – mainly anatase with a minor fraction of brookite – and the Au NPs are on the order of 5 and 7–18 nm, respectively. Addition of poly(ethylene oxide) to the reaction mixture enables pore size tuning, thus providing access to different materials with different photocatalytic activities. Water splitting experiments using a sunlight simulator and a Xe lamp show that the new hybrid materials are effective water splitting catalysts and produce up to 30 mmol of hydrogen per 24 h. Overall the article demonstrates that the combination of a renewable and robust scaffold such as B. mori silk with a photoactive material provides a promising approach to new monolithic photocatalysts that can easily be recycled and show great potential for application in lightweight devices for green fuel production.
机译:报道了两种新型的二氧化钛(TiO2)/金(Au)/家蚕丝杂化材料的合成,结构和光催化水分解性能。所有材料均为单块,直径最大约为。 4.5厘米这些材料在宏观上是均质的且具有多孔性,表面积在170至210 m 2 / g之间。 TiO2纳米颗粒(NPs)的直径(主要是锐钛矿和少量的板钛矿)和Au NPs的直径分别为5纳米和7-18 nm。向反应混合物中加入聚环氧乙烷可调节孔径,从而提供具有不同光催化活性的不同材料的通道。使用阳光模拟器和Xe灯进行的水分解实验表明,这种新型杂化材料是有效的水分解催化剂,每24小时产生多达30 mmol的氢。总体而言,本文证明,可再生且坚固的支架(例如桑蚕丝)与光敏材料的结合为新型整体式光催化剂提供了一种有前途的方法,该催化剂易于回收利用,并显示出在生产绿色燃料的轻型设备中的巨大潜力。

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