Silva Cristina, Pászti Zoltán, Salmanzade Khirdakhanim, Olasz Dániel, Dodony Erzsébet, Sáfrán György, Szegedi Ágnes, Sebestyén Zoltán, Tompos András, Borbáth Irina
Institute of Materials and Environmental Chemistry, HUN-REN Research Centre for Natural Sciences, Magyar Tudósok Körútja 2, H-1117 Budapest, Hungary.
Department of Physical Chemistry and Materials Science, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, Műegyetem rkp. 3, H-1111 Budapest, Hungary.
Nanomaterials (Basel). 2025 Feb 22;15(5):342. doi: 10.3390/nano15050342.
Sn-doped TiO-carbon composites were identified as promising multifunctional supports for Pt electrocatalysts, in which the oxide component enhances resistance against corrosion and strong metal-support interactions at the Pt-oxide boundary ensure high stability for the Pt nanoparticles. This work is devoted to the study of the influence of preliminary functionalization of the carbon on the properties of Pt/TiSnO-C catalysts. The structural, compositional and morphological differences between the samples prepared using functionalized or unmodified carbon, as well as the effect of carbon pre-modification on the electrocatalytic behavior of the synthesized Pt catalysts, were investigated using TEM, XRD, XPS, nitrogen adsorption and electrochemical measurements. The presence of oxygen-containing functional groups on carbon treated with HNO and glucose leads to the formation of a homogeneous coating of the carbon with dispersed crystallites of mixed oxide. Elemental mapping revealed the proximity of Sn species with highly dispersed (2-3 nm) Pt particles. Notably, the electrochemical results indicated enhanced activity in CO electrooxidation for both functionalized and unmodified carbon-containing catalysts. An improvement in the 10,000-cycle long-term stability of the catalyst prepared using functionalized carbon was evident compared to the catalyst with untreated carbon or reference Pt/C.
锡掺杂的二氧化钛-碳复合材料被认为是用于铂电催化剂的有前景的多功能载体,其中氧化物组分增强了耐腐蚀性,并且在铂-氧化物界面处的强金属-载体相互作用确保了铂纳米颗粒的高稳定性。这项工作致力于研究碳的预官能化对Pt/TiSnO-C催化剂性能的影响。使用透射电子显微镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)、氮气吸附和电化学测量等方法,研究了使用官能化或未改性碳制备的样品之间的结构、组成和形态差异,以及碳预改性对合成的铂催化剂电催化行为的影响。用硝酸和葡萄糖处理过的碳上存在含氧官能团,导致形成了碳与混合氧化物分散微晶的均匀涂层。元素映射显示锡物种与高度分散(2-3纳米)的铂颗粒接近。值得注意的是,电化学结果表明,官能化和未改性的含碳催化剂在一氧化碳电氧化方面的活性均有所增强。与未处理碳的催化剂或参比Pt/C相比,使用官能化碳制备的催化剂在10000次循环的长期稳定性方面有明显改善。