Control of Cluster Structures in Catalyst Inks by a Dispersion Medium
作者:Daozeng Yang, Shaomin Zhu, Yuqing Guo, Haifeng Tang, Daijun Yang, Cunman Zhang, Pingwen Ming, Bing Li · 发表于:ACS Omega · 年份:2021 · DOI:10.1021/acsomega.1c05026 · 被引用次数:29 · 研究领域:Fuel Cells and Related Materials、Electrocatalysts for Energy Conversion、Advanced battery technologies research
High Resolution Image Download MS PowerPoint Slide The cluster structure in the catalyst ink of a proton exchange membrane fuel cell determines its performance. The interaction among solvent, ionomer, and catalyst in ink determines the cluster structure and affects the microstructure and surface morphology of the catalyst layer, which is of great significance to improve the conductivity of the catalyst layer to protons, electrons, and water. First, the dissolved state of the main chain and the side chain of the ionomer in solvent was characterized. The results of relative viscosity, ζ-potential, effective proton fraction, and nuclear magnetic resonance (NMR) showed that the alcohol aqueous solution promoted the stretching electrolysis of the main chain and the side chain of the ionomer more than the pure aqueous solvent, making the ionomer clusters smaller. The rheological test of the ink shows that the pure water solvent ink has the largest cluster and the strongest network structure. Under the test conditions, the clusters in the ink can be reconstructed quickly after breakage through viscous shearing. The addition of alcohols will make the clusters in the ink smaller and the network structure brittle. After the clusters and the network structure are damaged, they will slowly recombine and the viscosity in the ink will gradually recover. Ethanol will minimize the clusters in the ink, and the network structure in the ink is the weakest. The effect of the network strength on ...