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通过铜锌电氧化控制桶形纳米结构的形态。

Controlling the Morphology of Barrel-Shaped Nanostructures Grown via CuZn Electro-Oxidation.

作者信息

Giziński Damian, Mojsilović Kristina, Brudzisz Anna, Tiringer Urša, Vasilić Rastko, Taheri Peyman, Stępniowski Wojciech J

机构信息

Faculty of Advanced Technologies and Chemistry, Institute of Materials Science and Engineering, Military University of Technology, Kaliskiego Str. 2, 00908 Warsaw, Poland.

Faculty of Physics, University of Belgrade, Studentski Trg 12-16, 11000 Belgrade, Serbia.

出版信息

Materials (Basel). 2022 Jun 2;15(11):3961. doi: 10.3390/ma15113961.

Abstract

Herein, we report a feasible method for forming barrel-like hybrid Cu(OH)-ZnO structures on α-brass substrate via low-potential electro-oxidation in 1 M NaOH solution. The presented study was conducted to investigate the electrochemical behavior of CuZn in a passive range (-0.2 V-0.5 V) and its morphological changes that occur under these conditions. As found, morphology and phase composition of the grown layer strongly depend on the applied potential, and those material characteristics can be tuned by varying the operating conditions. To the best of our knowledge, the yielded morphology of barrel-like structure has not been previously observed for brass anodizing. Additionally, photoactivity under both UV and daylight irradiation-induced degradation of organic dye (methyl orange) using Cu(OH)-ZnO composite was explored. Obtained results proved photocatalytic activity of the material that led to degradation of 43% and 36% of the compound in UV and visible light, respectively. The role of Cu(OH) in improving ZnO photoactivity was recognized and discussed. As implied by both the undertaken research and the literature on the subject, cupric hydroxide can act as a trap for photoexcited electrons, and thus contributes to stabilizing electron-hole recombination. This resulted in improved light-absorbing properties of the photoactive component, ZnO.

摘要

在此,我们报道了一种在1 M NaOH溶液中通过低电位电氧化在α-黄铜基底上形成桶状混合Cu(OH)-ZnO结构的可行方法。本研究旨在研究CuZn在钝化区(-0.2 V - 0.5 V)的电化学行为及其在这些条件下发生的形态变化。结果发现,生长层的形态和相组成强烈依赖于施加的电位,并且可以通过改变操作条件来调整这些材料特性。据我们所知,黄铜阳极氧化此前尚未观察到所产生的桶状结构形态。此外,还探索了使用Cu(OH)-ZnO复合材料在紫外光和日光照射下对有机染料(甲基橙)的光催化降解活性。所得结果证明了该材料的光催化活性,其在紫外光和可见光下分别导致43%和36%的化合物降解。认识并讨论了Cu(OH)在提高ZnO光活性中的作用。正如本研究所暗示以及该主题的文献所述,氢氧化铜可以作为光激发电子的陷阱,从而有助于稳定电子-空穴复合。这导致了光活性组分ZnO的光吸收性能得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf85/9181876/7c37f3952f2a/materials-15-03961-g001.jpg

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