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通过激光诱导金属薄膜去湿制备的负载金纳米粒子的阳极二氧化钛纳米管。

Anodic titania nanotubes decorated with gold nanoparticles produced by laser-induced dewetting of thin metallic films.

作者信息

Grochowska Katarzyna, Nedyalkov Nikolay, Karczewski Jakub, Haryński Łukasz, Śliwiński Gerard, Siuzdak Katarzyna

机构信息

Centre of Plasma and Laser Engineering, The Szewalski Institute of Fluid-Flow Machinery, Polish Academy of Sciences, 14 Fiszera St., 80-231, Gdańsk, Poland.

Institute of Electronics, Bulgarian Academy of Sciences, 72 Tsarigradsko Shose Blvd., 1784, Sofia, Bulgaria.

出版信息

Sci Rep. 2020 Nov 25;10(1):20506. doi: 10.1038/s41598-020-77710-x.

Abstract

Herein, we combine titania layers with gold species in a laser-supported process and report a substantial change of properties of the resulting heterostructures depending on the major processing parameters. Electrodes were fabricated via an anodisation process complemented with calcination to ensure a crystalline phase, and followed by magnetron sputtering of metallic films. The obtained TiO nanotubes with deposited thin (5, 10 nm) Au films were treated with a UV laser (355 nm) to form Au nanoparticles on top of the nanotubes. It was proven that selected laser working parameters ensure not only the formation of Au nanoparticles, but also simultaneously provide preservation of the initial tubular architecture, while above-threshold laser fluences result in partial destruction (melting) of the top layer of the nanotubes. For almost all of the samples, the crystalline phase of the nanotubes observed in Raman spectra was maintained independently of the laser processing parameters. Enhanced photoresponse up to ca 6 mA/cm was demonstrated by photoelectrochemical measurements on samples obtained by laser annealing of the 10 nm Au coating on a titania support. Moreover, a Mott-Schottky analysis indicated the dramatically increased (two orders of magnitude) concentration of donor density in the case of a laser-treated Au-TiO heterojunction compared to reference electrodes.

摘要

在此,我们在激光辅助过程中将二氧化钛层与金物种相结合,并报告了所得异质结构的性质根据主要加工参数发生的显著变化。电极通过阳极氧化工艺制备,并辅以煅烧以确保结晶相,随后通过磁控溅射金属膜。对获得的沉积有薄(5、10纳米)金膜的二氧化钛纳米管进行紫外激光(355纳米)处理,以在纳米管顶部形成金纳米颗粒。结果表明,选定的激光工作参数不仅能确保金纳米颗粒的形成,还能同时保持初始管状结构,而高于阈值的激光能量密度会导致纳米管顶层部分破坏(熔化)。对于几乎所有样品,拉曼光谱中观察到的纳米管结晶相不受激光加工参数的影响。通过对在二氧化钛载体上对10纳米金涂层进行激光退火得到的样品进行光电化学测量,证明了光响应增强至约6毫安/平方厘米。此外,莫特-肖特基分析表明,与参比电极相比,激光处理的金-二氧化钛异质结的施主密度浓度显著增加(两个数量级)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c56/7688952/ede4c5774d09/41598_2020_77710_Sch1_HTML.jpg

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