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PVA/Pt/N-TiO2/SrTiO3 porous films with adjustable pore size for hydrogen production under simulated sunlight

机译:PVA / Pt / N-TiO2 / SRTIO3具有可调节孔径的多孔膜,用于模拟阳光下的氢气生产

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In this study, poly(vinyl alcohol)/platinum/nitrogen-doped titanium dioxide/strontium titanate composite (PVA/Pt/NT/STO) porous films with adjustable pore sizes were successfully synthesized using the facile etching SiO2 method. This enhanced the light transmittance and contact rate between the photocatalyst and solution. The effects of the size and number of the pores on the hydrogen production rate were studied under simulated sunlight. The pore size of the PVA/Pt/NT/STO film increased with increasing particle size of the as-prepared SiO2, and the photocatalytic hydrogen production efficiency increased with increasing pore size and number. Due to the formation of pores on the film, the light transmittance and charge separation of the film increased. Owing to the good light transmittance and charge separation of the porous PVA/Pt/NT/STO film, the optimal photocatalytic hydrogen production rate of the PVA/Pt/NT/ STO-8S-I-20 reached 34,895 mu mol/h/g when the alcohol solvent, synthesis time, and SiO2 concentration were isopropanol, 20 h, and 8 wt%, respectively. Furthermore, the photocatalytic hydrogen production rate was approximately three times higher than that of the dense PVA/Pt/NT/STO film. (C) 2020 Elsevier Inc. All rights reserved.
机译:在该研究中,使用舒适的蚀刻SiO 2方法成功地合成了具有可调孔径的聚(乙烯醇)/铂/氮掺杂钛二氧化钛/钛酸锶复合钛(PVA / Pt / NT / STO)多孔膜。这改变了光催化剂和溶液之间的透光率和接触率。在模拟阳光下研究了孔径对孔的尺寸和数量的影响。 PVA / Pt / NT / STO膜的孔径随着制备的SiO 2的粒度的增加而增加,并且光催化氢生产效率随着孔径和数量的增加而增加。由于薄膜上形成孔,薄膜的透光率和电荷分离增加。由于多孔PVA / Pt / NT / STO膜的良好透光率和电荷分离,PVA / Pt / NT / STO-8S-20的最佳光催化氢气产生率达到34,895μmol/ h / g当醇溶剂,合成时间和SiO 2浓度分别是异丙醇,20小时和8wt%。此外,光催化氢气产生率大约比致密PVA / Pt / NT / STO膜高的三倍。 (c)2020 Elsevier Inc.保留所有权利。

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