Samala Nagaprasad Reddy, Friedman Ariel, Elbaz Lior, Grinberg Ilya
Department of Chemistry, Bar-Ilan University, Ramat Gan 5290002, Israel.
J Phys Chem Lett. 2024 Jan 18;15(2):481-489. doi: 10.1021/acs.jpclett.3c03209. Epub 2024 Jan 8.
The development of durable platinum-group-metal-free oxygen reduction reaction (ORR) catalysts is a key research direction for enabling the wide use of fuel cells. Here, we use a combination of experimental measurements and density functional theory calculations to study the activity and durability of seven iron-based metallophthalocyanine (MPc) ORR catalysts that differ only in the identity of the substituent groups on the MPcs. While the MPcs show similar ORR activity, their durabilities as measured by the current decay half-life differ greatly. We find that the energy difference between the hydrogenated intermediate structure and the final demetalated structure () of the MPcs is linearly related to the degradation reaction barrier energy. Comparison to the degradation data for the previously studied metallocorrole systems suggested that also serves as a descriptor for the corrole systems and that the high availability of protons at the active site due to the COOH group of the -corrole decreases the durability.
开发耐用的无铂族金属氧还原反应(ORR)催化剂是实现燃料电池广泛应用的关键研究方向。在此,我们结合实验测量和密度泛函理论计算,研究了七种仅在金属酞菁(MPc)上取代基不同的铁基金属酞菁(MPc)ORR催化剂的活性和耐久性。虽然MPc表现出相似的ORR活性,但通过电流衰减半衰期测量的它们的耐久性差异很大。我们发现,MPc的氢化中间体结构与最终脱金属结构之间的能量差()与降解反应势垒能量呈线性相关。与先前研究的金属卟吩体系的降解数据比较表明,也可作为卟吩体系的描述符,并且由于β-卟吩的COOH基团导致活性位点处质子的高可用性降低了耐久性。