Kedruk Yevgeniya Y, Contestabile Alessandra, Zeng Juqin, Fontana Marco, Laurenti Marco, Gritsenko Lesya V, Cicero Giancarlo, Pirri Candido F, Abdullin Khabibulla A
Department of General Physics, Satbayev University, Almaty 050013, Kazakhstan.
Department of Applied Science and Technology, Politecnico di Torino, 10129 Turin, Italy.
Nanomaterials (Basel). 2023 Sep 9;13(18):2527. doi: 10.3390/nano13182527.
Environmental problems are among the most pressing issues in the modern world, including the shortage of clean drinking water partially caused by contamination from various industries and the excessive emission of CO primarily from the massive use of fossil fuels. Consequently, it is crucial to develop inexpensive, effective, and environmentally friendly methods for wastewater treatment and CO reduction, turning them into useful feedstocks. This study explores a unique method that addresses both challenges by utilizing ZnO, which is recognized as one of the most active semiconductors for photocatalysis, as well as a cost-effective electrocatalyst for the CO reduction reaction (CORR). Specifically, we investigate the influence of the morphology of various ZnO nanostructures synthesized via different low-cost routes on their photocatalytic properties for degrading the rhodamine-B dye (RhB) and on their electrocatalytic performance for the CORR. Our results show that the ZnO lamella morphology achieves the best performance compared to the nanorod and nanoparticle structures. This outcome is likely attributed to the lamella's higher aspect ratio, which plays a critical role in determining the structural, optical, and electrical properties of ZnO.
环境问题是现代世界中最紧迫的问题之一,包括清洁饮用水短缺,部分原因是各行业的污染,以及主要由大量使用化石燃料导致的一氧化碳过量排放。因此,开发廉价、有效且环保的废水处理和一氧化碳减排方法,并将它们转化为有用的原料至关重要。本研究探索了一种独特的方法,通过利用氧化锌来应对这两个挑战,氧化锌被认为是光催化最活跃的半导体之一,也是用于一氧化碳还原反应(CORR)的具有成本效益的电催化剂。具体而言,我们研究了通过不同低成本路线合成的各种氧化锌纳米结构的形态对其降解罗丹明-B染料(RhB)的光催化性能以及对CORR的电催化性能的影响。我们的结果表明,与纳米棒和纳米颗粒结构相比,氧化锌薄片形态具有最佳性能。这一结果可能归因于薄片的高纵横比,其在决定氧化锌的结构、光学和电学性质方面起着关键作用。