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Longitudinal strand ordering leads to shear thinning in Nafion

机译:纵向链有序导致Nafion的剪切变薄

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Proton-exchange membrane fuel cells (PEMFC) offer a promising energy generation alternative for a wide range of technologies thanks to their ecological friendliness and unparalleled efficiency. At the heart of these electrochemical cells lies the membrane electrode assembly with its most important energy conversion components, the Proton Exchange Membrane. This component is created through the use of printing techniques and Nafion inks. The physicochemical properties of the ink, such as its viscosity under shear, are critical for the finished product. In this work we present non-equilibrium Molecular Dynamics simulations using a MARTINI based coarse-grained model for Nafion to understand the mechanism governing the shear viscosity of Nafion solutions. By simulating a Couette flow and calculating density maps of the Nafion chains in these simulations we shed light on the process that leads to the experimentally observed shear thinning effects of Nafion solutions under flow. We observe rod-shaped Nafion microstructures, 3 nm in size on average, when shear flow is absent or low. Higher shear rates instead break these structures and align Nafion strands along the direction of the flow, resulting in lower shear viscosities. Our work paves the way for a deeper understanding of the dynamic and mechanical properties of Nafion including studies of more complex CL and PEM inks.
机译:质子交换膜燃料电池 (PEMFC) 因其生态友好性和无与伦比的效率,为各种技术提供了一种很有前途的能源生产替代方案。这些电化学电池的核心是膜电极组件及其最重要的能量转换组件,即质子交换膜。该组件是通过使用印刷技术和Nafion油墨创建的。油墨的物理化学特性,例如其在剪切下的粘度,对成品至关重要。在这项工作中,我们使用基于MARTINI的Nafion粗粒度模型提出了非平衡分子动力学模拟,以了解控制Nafion溶液剪切粘度的机制。通过模拟Couette流动并计算这些模拟中Nafion链的密度图,我们阐明了导致Nafion溶液在流动下实验观察到的剪切变薄效应的过程。我们观察到杆状Nafion微观结构,平均尺寸为3 nm,当剪切流不存在或低时。更高的剪切速率反而会破坏这些结构,并使Nafion链沿流动方向对齐,从而降低剪切粘度。我们的工作为更深入地了解Nafion的动力学和机械性能铺平了道路,包括研究更复杂的CL和PEM油墨。

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