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通过分散介质控制催化剂油墨中的团簇结构

Control of Cluster Structures in Catalyst Inks by a Dispersion Medium.

作者信息

Yang Daozeng, Zhu Shaomin, Guo Yuqing, Tang Haifeng, Yang Daijun, Zhang Cunman, Ming Pingwen, Li Bing

机构信息

School of Materials Science and Engineering, Dalian Jiaotong University, 794 Yellow River Road, Dalian 116021, China.

School of Automotive Studies, Tongji University (Jiading Campus), 4800 Cao'an Road, Shanghai 201804, China.

出版信息

ACS Omega. 2021 Nov 22;6(48):32960-32969. doi: 10.1021/acsomega.1c05026. eCollection 2021 Dec 7.

Abstract

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 the cluster structure is weakened by reducing the solid content in the ink. The amplitude scanning test shows that the network structure in the slurry is almost eliminated after reducing the solid content, the storage modulus of ink with water, 50 wt % isopropyl alcohol (IPA), 50 wt % -propanol (NPA), and 50 wt % ethanol (ET) decreases in turn, as well as the liquid viscosity behavior increases and the cluster particle size in the ink decreases. In conclusion, more dispersed ionomers and alcohol molecules with smaller molecular structures are more conducive to the dispersion of clusters in the ink.

摘要

质子交换膜燃料电池催化剂墨水的团簇结构决定其性能。墨水中溶剂、离聚物和催化剂之间的相互作用决定团簇结构,并影响催化剂层的微观结构和表面形态,这对于提高催化剂层对质子、电子和水的传导性具有重要意义。首先,对离聚物主链和侧链在溶剂中的溶解状态进行了表征。相对粘度、ζ电位、有效质子分数和核磁共振(NMR)结果表明,醇水溶液比纯水溶剂更能促进离聚物主链和侧链的伸展解离,使离聚物团簇更小。墨水的流变学测试表明,纯水溶剂墨水具有最大的团簇和最强的网络结构。在测试条件下,墨水中的团簇在通过粘性剪切破坏后能够快速重构。醇的加入会使墨水中的团簇变小,网络结构变脆。团簇和网络结构受损后,它们会缓慢重新结合,墨水中的粘度会逐渐恢复。乙醇会使墨水中的团簇最小化,墨水中的网络结构最弱。通过降低墨水中的固体含量,网络强度对团簇结构的影响会减弱。振幅扫描测试表明,降低固体含量后,浆料中的网络结构几乎被消除,水、50 wt%异丙醇(IPA)、50 wt%正丙醇(NPA)和50 wt%乙醇(ET)的墨水储能模量依次降低,液体粘度行为增加,墨水中的团簇粒径减小。总之,更分散的离聚物和分子结构更小的醇分子更有利于墨水中团簇的分散。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/708e/8655915/22188d1dd739/ao1c05026_0002.jpg

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