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高压和温度对一元醇聚集能力的影响

High-Pressure and Temperature Effects on the Clustering Ability of Monohydroxy Alcohols.

作者信息

Grelska Joanna, Temleitner László, Park Changyong, Jurkiewicz Karolina, Pawlus Sebastian

机构信息

A. Chełkowski Institute of Physics, University of Silesia in Katowice, 75 Pułku Piechoty 1, 41-500 Chorzów, Poland.

HUN-REN Wigner Research Centre for Physics, Konkoly Thege út 29-33, H-1121 Budapest, Hungary.

出版信息

J Phys Chem Lett. 2024 Mar 21;15(11):3118-3126. doi: 10.1021/acs.jpclett.4c00085. Epub 2024 Mar 12.

Abstract

This study examined the clustering behavior of monohydroxy alcohols, where hydrogen-bonded clusters of up to a hundred molecules on the nanoscale can form. By performing X-ray diffraction experiments at different temperatures and under high pressure, we investigated how these conditions affect the ability of alcohols to form clusters. The pioneering high-pressure experiment performed on liquid alcohols contributes to the emerging knowledge in this field. Implementation of molecular dynamics simulations yielded excellent agreement with the experimental results, enabling the analysis of theoretical models. Here we show that at the same global density achieved either by alteration of pressure or temperature, the local aggregation of molecules at the nanoscale may significantly differ. Surprisingly, high pressure not only promotes the formation of hydrogen-bonded clusters but also induces the serious reorganization of molecules. This research represents a milestone in understanding association under extreme thermodynamic conditions in other hydrogen bonding systems such as water.

摘要

本研究考察了一元醇的聚集行为,在纳米尺度上可以形成由多达一百个分子组成的氢键簇。通过在不同温度和高压下进行X射线衍射实验,我们研究了这些条件如何影响醇形成簇的能力。在液态醇上进行的开创性高压实验为该领域不断涌现的知识做出了贡献。分子动力学模拟的实施与实验结果取得了极好的一致性,从而能够对理论模型进行分析。我们在此表明,在通过改变压力或温度实现相同全局密度的情况下,纳米尺度上分子的局部聚集可能会有显著差异。令人惊讶的是,高压不仅促进了氢键簇的形成,还诱导了分子的严重重组。这项研究是理解其他氢键系统(如水)在极端热力学条件下缔合的一个里程碑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10a1/10961836/564ce1682acd/jz4c00085_0001.jpg

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