Shanghai Key Laboratory of Materials Protection and Advanced Materials in Electric Power, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai 200090, China.
Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200090, China.
ACS Appl Mater Interfaces. 2023 Feb 1;15(4):5198-5208. doi: 10.1021/acsami.2c19196. Epub 2023 Jan 23.
Designing high-efficiency and newly developed Pd-based bifunctional catalytic materials still faces tremendous challenges for oxygen reduction reaction (ORR) and formic acid oxidation reaction (FAO). Metallene materials with unique structural features are considered strong candidates for enhancing the catalytic performance. In this work, we synthesized copper-doped two-dimensional curved porous Pd metallene nanomaterials a simplistic one-pot solvothermal method. The updated catalysts served as sturdy bifunctional electrocatalysts for cathodal ORR and anodic FAO. In particular, the developed PdCu metallene exhibits excellent half-wave potential (0.943 V vs RHE) and mass activity (MA) (1.227 A mg) in alkaline solutions, which are 1.09 and 6.26 times higher than those of commercial Pt/C, respectively, indicating that the nanomaterials have abundant active sites, displaying surpassing catalytic performance for oxygen reduction. Furthermore, in an acidic formic acid electrolyte, PdCu metallene exhibits prominent MA with a value of 0.905 A mg, which is 2.76 times that of commercial Pd/C. The remarkable bifunctional catalytic performance of metallene materials can be attributed to the special structure and electronic effects. This work shows that metallene materials with curved and porous properties provide a scientific idea for the development and design of efficient and steady electrocatalysts.
设计高效且新开发的钯基双功能催化材料仍然面临着氧还原反应(ORR)和甲酸氧化反应(FAO)的巨大挑战。具有独特结构特征的金属烯材料被认为是增强催化性能的有力候选者。在这项工作中,我们通过简单的一步溶剂热法合成了铜掺杂的二维弯曲多孔 Pd 金属烯纳米材料。更新的催化剂作为阴极 ORR 和阳极 FAO 的坚固双功能电催化剂。特别是,所开发的 PdCu 金属烯在碱性溶液中表现出优异的半波电位(0.943 V 对 RHE)和质量活性(MA)(1.227 A mg),分别比商业 Pt/C 高 1.09 和 6.26 倍,表明纳米材料具有丰富的活性位点,对氧还原具有卓越的催化性能。此外,在酸性甲酸电解质中,PdCu 金属烯表现出突出的 MA 值为 0.905 A mg,是商业 Pd/C 的 2.76 倍。金属烯材料的显著双功能催化性能可归因于其特殊的结构和电子效应。这项工作表明,具有弯曲和多孔特性的金属烯材料为开发和设计高效稳定的电催化剂提供了科学思路。