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半结晶高密度聚乙烯中氢吸附的分子模拟:连接链表面分数的影响

Molecular Simulations of Hydrogen Sorption in Semicrystalline High-Density Polyethylene: The Impact of the Surface Fraction of Tie-Chains.

作者信息

Atiq Omar, Ricci Eleonora, Baschetti Marco Giacinti, De Angelis Maria Grazia

机构信息

Department of Civil, Chemical, Environmental and Material Engineering, (DICAM), Alma Mater Studiorum - Università di Bologna, via Terracini 28, Bologna 40131, Italy.

DPI, P.O. Box 902, Eindhoven 5600 AX, The Netherlands.

出版信息

J Phys Chem B. 2024 Mar 21;128(11):2799-2810. doi: 10.1021/acs.jpcb.3c07705. Epub 2024 Mar 7.

Abstract

The modeling of the barrier properties of semicrystalline polymers has gained interest following the possible application of such materials as protective liners for the safe supply of pressurized hydrogen. The mass transport in such systems is intimately related to the complex intercalation between the crystal and amorphous phases, which was approached in this work through an all-atom representation of high-density polyethylene structures with a tailored fraction of amorphous-crystalline connections (tie-chains). Simulations of the polymer pressure-volume-temperature data and hydrogen sorption were performed by means of molecular dynamics and the Widom test particle insertion method. The discretization of the simulation domains of the semicrystalline structures allowed us to obtain profiles of density, degree of order, and gas solubility. The results indicated that the gas sorption in the crystalline regions is negligible and that the confinement of the amorphous phase between crystals induces a significant increase in density and a drop in the sorption capacity, even in the absence of tie-chains. Adding ties between the crystal and the amorphous phase results in further densification, an increase of the lamella tilt angle, and a decrease in the degree of crystallinity and hydrogen sorption coefficient, in agreement with several literature references.

摘要

半结晶聚合物阻隔性能的建模受到关注,因为这类材料有可能用作加压氢气安全供应的防护衬里。此类系统中的质量传输与晶体相和非晶相之间复杂的插层密切相关,在这项工作中,通过对高密度聚乙烯结构进行全原子表示,并设置特定比例的非晶-晶体连接(连接链)来探讨这一关系。借助分子动力学和维德曼测试粒子插入法对聚合物的压力-体积-温度数据以及氢气吸附进行了模拟。半结晶结构模拟域的离散化使我们能够获得密度、有序度和气体溶解度的分布情况。结果表明,晶体区域中的气体吸附可忽略不计,即使在没有连接链的情况下,晶体之间非晶相的受限也会导致密度显著增加以及吸附容量下降。在晶体相和非晶相之间添加连接链会导致进一步致密化、片层倾斜角增大、结晶度和氢气吸附系数降低,这与多篇文献报道一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d056/10961721/b8e62ce9910f/jp3c07705_0001.jpg

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