Balsamo Stefano Andrea, La Greca Eleonora, Calà Pizzapilo Marta, Sciré Salvatore, Fiorenza Roberto
Department of Chemical Sciences, University of Catania, Viale A. Doria 6, 95125 Catania, Italy.
Institute for The Study of Nanostructured Materials (ISMN)-CNR, Via Ugo La Malfa 153, 90146 Palermo, Italy.
Materials (Basel). 2023 Jan 12;16(2):747. doi: 10.3390/ma16020747.
The interaction between CeO-GO or CeO-rGO and gold as co-catalysts were here investigated for solar H production by photoreforming of glycerol. The materials were prepared by a solar photoreduction/deposition method, where in addition to the activation of CeO the excited electrons were able to reduce the gold precursor to metallic gold and the GO into rGO. The presence of gold was fundamental to boost the H production, whereas the GO or the rGO extended the visible-light activity of cerium oxide (as confirmed by UV-DRS). Furthermore, the strong interaction between CeO and Au (verified by XPS and TEM) led to good stability of the CeO-rGO-Au sample with the evolved H that increased during five consecutive runs of glycerol photoreforming. This catalytic behaviour was ascribed to the progressive reduction of GO into rGO, as shown by Raman measurements of the photocatalytic runs. The good charge carrier separation obtained with the CeO-rGO-Au system allowed the simultaneous production of H and reduction of GO in the course of the photoreforming reaction. These peculiar features exhibited by these unconventional photocatalysts are promising to propose new solar-light-driven photocatalysts for green hydrogen production.
本文研究了CeO-GO或CeO-rGO与金作为共催化剂在甘油光催化重整制氢反应中的相互作用。这些材料通过太阳能光还原/沉积法制备,在此过程中,除了CeO被活化外,激发电子还能将金前驱体还原为金属金,并将GO还原为rGO。金的存在对提高产氢量至关重要,而GO或rGO则扩展了氧化铈的可见光活性(紫外漫反射光谱证实)。此外,CeO与Au之间的强相互作用(通过XPS和TEM验证)使得CeO-rGO-Au样品具有良好的稳定性,在连续五次甘油光催化重整反应中,产氢量不断增加。拉曼光谱对光催化反应过程的测量表明,这种催化行为归因于GO逐渐还原为rGO。CeO-rGO-Au体系实现了良好的电荷载流子分离,使得在光催化重整反应过程中能够同时产氢和还原GO。这些非常规光催化剂所展现的独特特性,有望为绿色制氢提出新型太阳能驱动光催化剂。