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水在水合聚乙烯亚胺膜分子模型中的结构和动力学。

Structure and dynamics of water in molecular models of hydrated polyvinylamine membranes.

机构信息

School of Engineering, Institute for Materials and Processes, The University of Edinburgh, Edinburgh, UK.

出版信息

Phys Chem Chem Phys. 2019 Dec 11;21(48):26453-26465. doi: 10.1039/c9cp05399a.

Abstract

Facilitated transport membranes (FTMs) constitute an emerging class of polymer materials with promising properties for carbon capture applications. The key feature of these membranes is the presence of chemical groups which, in the presence of water, engage in a reaction with dissolved carbon dioxide, thus enhancing the permeability and selectivity of the membrane. Currently, little is known about the organization of these membranes on a molecular level, reaction mechanisms and detailed chemical balance, transport of water, ion species and dissolved gas molecules. The nature of the actual facilitation mechanism and the factors responsible for this effect remain unclear. Here, we use a case of polyvinylamine (PVAm), one of the most studied fixed carrier material for FTMs, to propose molecular models of the hydrated polymers. We aim to understand how transport of water is governed by structural properties of the membrane, such as the free volume, pore limiting diameter, and degree of protonation. We observe that even at the highest experimentally used hydration level, the mobility of water in PVAm matrices is significantly lower than that in bulk water; unlike in bulk systems, chloride ions exhibit much slower diffusion in confined water; this, in turn, affects the diffusion of water, which also diminishes in the presence of chloride ions.

摘要

促进传递膜(FTM)是一类新兴的聚合物材料,具有在碳捕集应用中很有前景的性能。这些膜的关键特征是存在化学基团,这些基团在水存在的情况下与溶解的二氧化碳发生反应,从而提高膜的渗透性和选择性。目前,对于这些膜在分子水平上的组织、反应机制和详细的化学平衡、水的传递、离子种类和溶解气体分子的了解甚少。实际促进机制的性质以及导致这种效应的因素仍不清楚。在这里,我们使用聚乙烯胺(PVAm)的情况,这是最常用于 FTM 的固定载体材料之一,来提出水合聚合物的分子模型。我们旨在了解水的传递如何受到膜的结构特性的控制,例如自由体积、孔径限制直径和质子化程度。我们观察到,即使在最高的实验水合水平下,PVAm 基质中水的流动性也明显低于本体水中的流动性;与本体系统不同,氯离子在受限水中的扩散速度要慢得多;这反过来又影响了水的扩散,而在存在氯离子的情况下,水的扩散也会减少。

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