Wang Xingkun, Chen Zongkun, Chen Sineng, Wang Huanlei, Huang Minghua
School of Materials Science and Engineering, Ocean University of China, Qingdao, 266100, P.R. China.
Chemistry. 2020 Oct 1;26(55):12589-12595. doi: 10.1002/chem.202000901. Epub 2020 Sep 7.
Electrochemical reduction of O (oxygen reduction reaction; ORR) provides an opportunity to achieve the commercial application of clean energy, but it remains challenging, so the rational design of inexpensive and efficient electrocatalysts is required. Palladium-based electrocatalysts have emerged as a class of the most promising candidates for the ORR, which could accelerate O adsorption, dissociation, and electron transfer. However, the metal Pd atoms tend to aggregate into nanoparticles, driven by the tendency of the metal surface free energy to decrease, which significantly reduces the atom utilization efficiency and the catalytic performance. Herein, a facile double solvent impregnation method is developed for the synthesis of highly dispersed Pd nanoparticles supported on hollow carbon spheres (Pd-HCS), which could act as efficient electrocatalysts for the ORR in basic solution. Systematic investigation reveals that the nitrogen-containing and oxygen-containing functional groups (especially -COOH groups) are essential for achieving the homogenous dispersion of Pd nanoparticles. Significantly, the optimized Pd-HCS electrocatalyst with homogeneously dispersed Pd nanoparticles and Pd-N sites delivers high electrocatalytic activity for the ORR and excellent stability, without significant decay in onset potential and half-potential and good resistance to methanol crossover. This work offers a new route for the rational design of efficient ORR electrocatalysts toward advanced materials and emerging applications.
氧的电化学还原(氧还原反应,ORR)为清洁能源的商业应用提供了契机,但仍具有挑战性,因此需要合理设计廉价且高效的电催化剂。钯基电催化剂已成为ORR最有前景的一类候选材料,它能够加速氧的吸附、解离和电子转移。然而,在金属表面自由能降低趋势的驱动下,金属钯原子倾向于聚集成纳米颗粒,这显著降低了原子利用效率和催化性能。在此,我们开发了一种简便的双溶剂浸渍法来合成负载在空心碳球上的高度分散的钯纳米颗粒(Pd-HCS),其可作为碱性溶液中ORR的高效电催化剂。系统研究表明,含氮和含氧官能团(尤其是-COOH基团)对于实现钯纳米颗粒的均匀分散至关重要。值得注意的是,具有均匀分散的钯纳米颗粒和Pd-N位点的优化后的Pd-HCS电催化剂对ORR具有高电催化活性和出色的稳定性,起始电位和半波电位无明显衰减,且对甲醇渗透具有良好的抗性。这项工作为合理设计面向先进材料和新兴应用的高效ORR电催化剂提供了一条新途径。