Institute of Materials, Ningbo University of Technology , Ningbo City 315016, P. R. China.
ACS Appl Mater Interfaces. 2016 Aug 10;8(31):20128-37. doi: 10.1021/acsami.6b06644. Epub 2016 Jul 27.
Development of novel hybrid photocatalysts with high efficiency and durability for photocatalytic hydrogen generation is highly desired but still remains a grand challenge currently. In the present work, we reported the exploration of ternary hybrid TiO2/CuO/Cu thoroughly mesoporous nanofibers via a foaming-assisted electrospinning technique. It is found that by adjusting the Cu contents in the solutions, the unitary (TiO2), binary (TiO2/CuO, TiO2/Cu), and ternary (TiO2/CuO/Cu) mesoporous products can be obtained, enabling the growth of TiO2/CuO/Cu ternary hybrids in a tailored manner. The photocatalytic behavior of the as-synthesized products as well as P25 was evaluated in terms of their hydrogen evolution efficiency for the photodecomposition water under Xe lamp irradiation. The results showed that the ternary TiO2/CuO/Cu thoroughly mesoporous nanofibers exhibit a robust stability and the most efficient photocatalytic H2 evolution with the highest release rate of ∼851.3 μmol g(-1) h(-1), which was profoundly enhanced for more than 3.5 times with respect to those of the pristine TiO2 counterparts and commercial P25, suggesting their promising applications in clean energy production.
开发高效、耐用的新型杂化光催化剂用于光催化制氢是目前非常需要的,但仍然是一个巨大的挑战。在本工作中,我们通过泡沫辅助静电纺丝技术,深入探索了三元杂化 TiO2/CuO/Cu 完全中孔纳米纤维。研究发现,通过调整溶液中的 Cu 含量,可以得到单元(TiO2)、二元(TiO2/CuO、TiO2/Cu)和三元(TiO2/CuO/Cu)中孔产物,从而可以定制生长 TiO2/CuO/Cu 三元杂化。通过在 Xe 灯照射下光解水来评估所合成产物以及 P25 的光催化性能,评价其产氢效率。结果表明,三元 TiO2/CuO/Cu 完全中孔纳米纤维表现出良好的稳定性和最高的光催化 H2 析出效率,其最大释放速率约为 851.3 μmol g-1 h-1,与原始 TiO2 相比增强了 3.5 倍以上,与商业 P25 相比增强了 4 倍以上,这表明其在清洁能源生产方面具有广阔的应用前景。