Xue Qiong, Huang Jian-Biao, Yang Dai-Jun, Li Bing, Zhang Cun-Man
Clean Energy Automotive Engineering Center, School of Automotive Studies, Tongji University Shanghai 201804 China
RSC Adv. 2021 May 28;11(32):19417-19425. doi: 10.1039/d1ra01468d. eCollection 2021 May 27.
The anti-corrosion properties of the carbon substrates of cathode catalysts play a vital role in the commercialization of fuel cell vehicles. Our report reveals the enhanced durability of graphitized carbon black catalyst substrates in polymer electrolyte membrane fuel cells (PEMFCs), tested under simulated start-stop cycling and high potential holding conditions. Graphitized carbon treated at various temperatures is used as the support for Pt catalysts. The catalyst utilizing graphitized carbon treated at 1800 °C demonstrates superior antioxidation properties and the inhibition of Pt particle coarsening. The decay ratio of the potential at 1000 mA cm has been reduced from 34.9% (commercial Pt/C) to 0.5% during high potential holding accelerated stress testing. Correspondingly, the growth of Pt particles is reduced from 0.95 nm (commercial Pt/C) to 0.08 nm; that is, the coalescence of Pt particles is effectively alleviated upon using graphitized carbon black.
阴极催化剂碳载体的抗腐蚀性能在燃料电池汽车商业化过程中起着至关重要的作用。我们的报告揭示了在模拟启停循环和高电位保持条件下测试的聚合物电解质膜燃料电池(PEMFC)中,石墨化炭黑催化剂载体的耐久性增强。在不同温度下处理的石墨化碳用作铂催化剂的载体。使用在1800℃处理的石墨化碳的催化剂表现出优异的抗氧化性能以及对铂颗粒粗化的抑制作用。在高电位保持加速应力测试期间,1000 mA cm下的电位衰减率已从34.9%(商业铂碳催化剂)降至0.5%。相应地,铂颗粒的生长从0.95 nm(商业铂碳催化剂)降至0.08 nm;也就是说,使用石墨化炭黑时铂颗粒的聚结得到有效缓解。