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分散溶剂和离聚物对质子交换膜燃料电池催化剂油墨流变学及催化剂层结构的影响

Effect of Dispersion Solvents and Ionomers on the Rheology of Catalyst Inks and Catalyst Layer Structure for Proton Exchange Membrane Fuel Cells.

作者信息

Guo Yuqing, Yang Daozeng, Li Bing, Yang Daijun, Ming Pingwen, Zhang Cunman

机构信息

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

Clean Energy Automotive Engineering Center, Tongji University, Jiading Campus, 4800 Cao'an Road, Shanghai 201804, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jun 16;13(23):27119-27128. doi: 10.1021/acsami.1c07070. Epub 2021 Jun 4.

Abstract

This study investigated the effects of the dielectric constant (ε) of a dispersion solvent and ionomer content on the rheology of graphitized carbon (GC)-supported Pt catalyst ink and the structure of catalyst layers (CLs). The ionomer dispersions and catalyst inks were tested using rheological techniques, zeta (ξ) potential, and dynamic light scattering measurements. Results showed that increases in the solvent ε or ionomer content increased the ξ-potential of catalyst particles in the ink, which reduced the catalyst agglomerate size. Steady-state and oscillation scans showed that the Pt/GC catalyst ink had shear-thinning properties and gel-like behavior. The ink with a solvent ε of 40 tended to be more Newtonian fluid, with low yield stress (σ). The ionomer content altered the rheology of the ink by changing the internal interaction of inks. Solvents with ε of 70 and 55 enhanced the adsorption of ionomers onto catalysts, thereby increasing the adhesion between ink particles and reducing the risk of CL cracking. As the ionomer content increased, the catalyst absorbed more ionomers in inks, increasing the fracture toughness of CLs, which reduced the crack width.

摘要

本研究考察了分散溶剂的介电常数(ε)和离聚物含量对石墨化碳(GC)负载的铂催化剂墨水的流变学以及催化剂层(CLs)结构的影响。使用流变技术、zeta(ξ)电位和动态光散射测量对离聚物分散体和催化剂墨水进行了测试。结果表明,溶剂ε或离聚物含量的增加会提高墨水中催化剂颗粒的ξ电位,从而减小催化剂团聚体尺寸。稳态和振荡扫描表明,Pt/GC催化剂墨水具有剪切变稀特性和类凝胶行为。溶剂ε为40的墨水更倾向于成为具有低屈服应力(σ)的牛顿流体。离聚物含量通过改变墨水的内部相互作用来改变墨水的流变学。ε为70和55的溶剂增强了离聚物在催化剂上的吸附,从而增加了墨水颗粒之间的附着力并降低了CL开裂的风险。随着离聚物含量的增加,催化剂在墨水中吸收了更多的离聚物,增加了CLs的断裂韧性,从而减小了裂纹宽度。

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