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聚二甲基硅氧烷聚合物与防晒相关污染物分子相互作用的计算多尺度研究

Computational Multiscale Study of the Interaction Between the PDMS Polymer and Sunscreen-Related Pollutant Molecules.

作者信息

Armaković Stevan, Vujić Đorđe, Brkić Boris

机构信息

University of Novi Sad, Faculty of Sciences, Department of Physics, Trg D. Obradovića 4, 21000 Novi Sad, Serbia.

BioSense Institute, University of Novi Sad, Dr Zorana Djindjića 1, 21000 Novi Sad, Serbia.

出版信息

Molecules. 2024 Oct 17;29(20):4908. doi: 10.3390/molecules29204908.

Abstract

Sunscreen molecules play a critical role in protecting skin from ultraviolet radiation, yet their efficient detection and separation pose challenges in environmental and analytical contexts. In this work, we employ a multilevel modeling approach to investigate the molecular interactions between representative sunscreen molecules and the polydimethylsiloxane (PDMS) polymer, a material widely recognized for its sorbent properties. Our goal is to explore how these interactions can be fine-tuned to facilitate the effective separation of sunscreen molecules in portable membrane inlet mass spectrometry (MIMS) systems, potentially leading to the development of new membrane materials. Using a combination of advanced computational techniques-force field molecular dynamics simulations, semiempirical GFN2-xTB, and density functional theory calculations-we assess the interaction strength and noncovalent interactions of sunscreen molecules, namely oxybenzone, naphthalene, benzo[a]anthracene, avobenzone, and 1,3,5-trichlorobenzene, with PDMS. Additionally, the effect of temperature on the interaction dynamics is evaluated, with the aim of extending the sorbent capacities of PDMS beyond light polar molecules to larger, polar sunscreen compounds. This study provides critical insights into the molecular-level interactions that may guide the design of novel membrane materials for efficient molecular separation.

摘要

防晒分子在保护皮肤免受紫外线辐射方面起着关键作用,然而,在环境和分析背景下,对其进行有效检测和分离面临挑战。在这项工作中,我们采用多层次建模方法来研究代表性防晒分子与聚二甲基硅氧烷(PDMS)聚合物之间的分子相互作用,PDMS是一种因其吸附特性而被广泛认可的材料。我们的目标是探索如何微调这些相互作用,以促进便携式膜进样质谱(MIMS)系统中防晒分子的有效分离,这可能会推动新型膜材料的开发。通过结合先进的计算技术——力场分子动力学模拟、半经验GFN2-xTB和密度泛函理论计算——我们评估了防晒分子(即氧苯酮、萘、苯并[a]蒽、阿伏苯宗和1,3,5-三氯苯)与PDMS之间的相互作用强度和非共价相互作用。此外,还评估了温度对相互作用动力学的影响,目的是将PDMS的吸附能力从轻度极性分子扩展到更大的极性防晒化合物。这项研究为分子水平的相互作用提供了关键见解,可能会指导高效分子分离新型膜材料的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bcc/11510613/3d9031870484/molecules-29-04908-g001.jpg

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