Korusenko Petr M, Knyazev Egor V, Vinogradov Alexander S, Kharisova Ksenia A, Filippova Sofya S, Rodionova Ulyana M, Levin Oleg V, Alekseeva Elena V
Electrochemistry Department, St. Petersburg State University, 7/9 Universitetskaya nab., St. Petersburg 199034, Russia.
Department of Physics, Omsk State Technical University, 11 Mira prosp., Omsk 644050, Russia.
Nanomaterials (Basel). 2024 Dec 4;14(23):1948. doi: 10.3390/nano14231948.
In this work, a set of analytical techniques, including scanning electron microscopy (SEM), Raman scattering spectroscopy, X-ray photoelectron spectroscopy (XPS), energy-dispersive X-ray microanalysis (EDX) and cyclic voltammetry (CV), were used to study the impact of high-energy He ion irradiation on the structural and electrochemical characteristics of sulfur-containing multi-walled carbon nanotubes (S-MWCNTs) placed on a titanium substrate. The results indicate that the ion beam treatment of the S-MWCNT system led to an increase in the level of imperfections on the surface structures of the nanotubes due to the formation of point defects on their outer walls and the appearance of oxygen-containing functional groups, including SO groups, near these defects. At the same time, a significant increase in the sulfur concentration (by 6.4 times) was observed on the surface of the S-MWCNTs compared to the surface of unirradiated nanotubes. This was due to the redeposition of sulfur atoms near the point defects under the action of the ion beam, followed by the subsequent formation of direct S-C chemical bonds. Electrochemical studies demonstrated that the irradiated S-MWCNTs/Ti system exhibit enhanced catalytic activity, with improved oxygen reduction reaction (ORR) performance and a substantial increase in anodic current during the oxidation reaction of hydrogen peroxide under alkaline conditions, highlighting their potential for advanced electrocatalytic applications.
在这项工作中,使用了一系列分析技术,包括扫描电子显微镜(SEM)、拉曼散射光谱、X射线光电子能谱(XPS)、能量色散X射线微分析(EDX)和循环伏安法(CV),来研究高能氦离子辐照对置于钛基底上的含硫多壁碳纳米管(S-MWCNTs)的结构和电化学特性的影响。结果表明,对S-MWCNT系统进行离子束处理导致纳米管表面结构的缺陷水平增加,这是由于其外壁上形成了点缺陷以及在这些缺陷附近出现了含氧官能团,包括SO基团。同时,与未辐照的纳米管表面相比,观察到S-MWCNTs表面的硫浓度显著增加(增加了6.4倍)。这是由于在离子束作用下硫原子在点缺陷附近重新沉积,随后形成了直接的S-C化学键。电化学研究表明,辐照后的S-MWCNTs/Ti系统表现出增强的催化活性,在碱性条件下过氧化氢氧化反应期间氧还原反应(ORR)性能得到改善且阳极电流大幅增加,突出了它们在先进电催化应用中的潜力。