Sergiienko Sergii A, Lajaunie Luc, Rodríguez-Castellón Enrique, Constantinescu Gabriel, Lopes Daniela V, Shcherban Nataliya D, Calvino José J, Labrincha João A, Sofer Zdenek, Kovalevsky Andrei V
Department of Inorganic Chemistry, University of Chemistry and Technology Prague Technická 5, 166 28 Prague 6 Czech Republic
Department of Materials and Ceramics Engineering, CICECO - Aveiro Institute of Materials, University of Aveiro 3810-193 Aveiro Portugal
RSC Adv. 2024 Jan 18;14(5):3052-3069. doi: 10.1039/d3ra07335a. eCollection 2024 Jan 17.
MXenes, a family of two-dimensional (2D) transition metal carbides, have been discovered as exciting candidates for various energy storage and conversion applications, including green hydrogen production by water splitting. Today, these materials mostly remain interesting objects for in-depth fundamental studies and scientific curiosity due to issues related to their preparation and environmental stability, limiting potential industrial applications. This work proposes a simple and inexpensive concept of composite electrodes composed of molybdenum- and titanium-containing MAX phases and MXene as functional materials. The concept is based on the modification of the initial MAX phase by the addition of metallic Ni, tuning Al- and carbon content and synthesis conditions, followed by fluoride-free etching under alkaline conditions. The proposed methodology allows producing a composite electrode with a well-developed 3D porous MAX phase-based structure acting as a support for electrocatalytic species, including MXene, and possessing good mechanical integrity. Electrochemical tests have shown a high electrochemical activity of such electrodes towards the hydrogen evolution reaction (HER), combined with a relatively high areal capacitance (up to 10 F cm).
MXenes是一类二维(2D)过渡金属碳化物,已被发现是各种能量存储和转换应用的令人兴奋的候选材料,包括通过水分解生产绿色氢气。如今,由于与它们的制备和环境稳定性相关的问题,这些材料大多仍然是深入基础研究和科学探索的有趣对象,限制了潜在的工业应用。这项工作提出了一种由含钼和钛的MAX相和MXene作为功能材料组成的复合电极的简单且廉价的概念。该概念基于通过添加金属镍、调整铝和碳含量以及合成条件对初始MAX相进行改性,然后在碱性条件下进行无氟蚀刻。所提出的方法允许制备具有发达的基于3D多孔MAX相结构的复合电极,该结构用作包括MXene在内的电催化物种的载体,并具有良好的机械完整性。电化学测试表明,这种电极对析氢反应(HER)具有高电化学活性,同时具有相对较高的面积电容(高达10 F/cm²)。