Department of Chemistry and Chemical Engineering, Qingdao University, 308 Ningxia Road, Qingdao, 266071, P. R. China.
Department of Materials Science and Engineering, Qingdao University, 308 Ningxia Road, Qingdao, 266071, P. R. China.
Nanoscale. 2019 Nov 7;11(41):19506-19511. doi: 10.1039/c9nr05726a. Epub 2019 Sep 25.
Non-Pt catalysts with excellent performance regarding the oxygen reduction reaction (ORR) have aroused enormous interest in recent years. Herein, we propose a dual-template method to synthesize a multiscale porous Fe-N-C (FeNC) catalyst. SiO and Zn are used as co-templates to produce a multiscale porous structure. Chitosan and glutaraldehyde are used as building blocks to fabricate the frameworks of the hydrogel. After lyophilization and annealing treatments, FeNC aerogel with a multiscale porous structure could be obtained. The as-prepared FeNC catalyst annealed at 900 °C (FeNC-900) exhibits a larger electrochemically active surface area and an improved ORR activity compared to FeNC annealed at other temperatures. FeNC-900 shows a superior ORR performance in comparison with that of commercial Pt/C in terms of the onset potential and half-wave potential, i.e., 0.959 and 0.837 V, which are 28 mV and 10 mV higher than those of Pt/C, respectively. Multiscale porosity is responsible for the outstanding ORR performance of FeNC-900. The electron transfer number of FeNC-900 for the ORR was calculated to be 3.95, which is comparable with that of Pt/C. In addition, the FeNC-900 catalyst possesses an excellent long-term duration and anti-poisoning capacity against methanol crossover. All these results endow the FeNC catalyst with tremendous potential for use in fuel cells.
近年来,具有优异氧还原反应(ORR)性能的非 Pt 催化剂引起了人们的极大兴趣。在此,我们提出了一种双重模板法来合成多尺度多孔 Fe-N-C(FeNC)催化剂。SiO 和 Zn 被用作共模板来产生多尺度多孔结构。壳聚糖和戊二醛被用作构建水凝胶框架的构建块。经过冷冻干燥和退火处理,可以得到具有多尺度多孔结构的 FeNC 气凝胶。在 900°C 下退火的所制备的 FeNC 催化剂(FeNC-900)与在其他温度下退火的 FeNC 相比,表现出更大的电化学活性表面积和改善的 ORR 活性。与商业 Pt/C 相比,FeNC-900 在起始电位和半波电位方面表现出更好的 ORR 性能,分别为 0.959 V 和 0.837 V,分别高出 28 mV 和 10 mV。多尺度孔隙率是 FeNC-900 出色的 ORR 性能的原因。FeNC-900 对 ORR 的电子转移数计算为 3.95,与 Pt/C 相当。此外,FeNC-900 催化剂具有出色的长期耐久性和抗甲醇交叉污染能力。所有这些结果都赋予了 FeNC 催化剂在燃料电池中应用的巨大潜力。