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评估两亲性单分子层对环境刺激的结构响应。

Evaluating the Structural Response of Amphiphilic Monolayers to Environmental Stimuli.

作者信息

Cordova-Huaman Allison V, Craven Nicholas C, Blake Marea J, Doughty Benjamin, McCabe Clare, Jennings G Kane

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, Tennessee 37235-1604, United States.

Interdisciplinary Materials Science Program, Vanderbilt University, Nashville, Tennessee 37235-1604, United States.

出版信息

Langmuir. 2025 Sep 16;41(36):24906-24917. doi: 10.1021/acs.langmuir.5c03473. Epub 2025 Sep 5.

Abstract

Amphiphilic monolayers composed of end groups with distinct polar and nonpolar functional groups offer rapid and reversible interfacial adaptation in response to environmental stimuli such as a change in interfacial medium polarity. We have synthesized and characterized a suite of monolayers with functional groups of competing polarity designed to reconfigure their interfacial chemical composition in response to solvent polarity. In these films, the end group is designed to be able to reorient and expose the functional groups that minimize the interfacial free energy between the film and the environment. Using a combination of spectroscopic, computational, and wettability studies, we have investigated the responsive interfacial behavior of different end groups upon exposure to environments with varying polarities. Contact angle measurements across a series of polar and dispersive probe liquids reveal trends that reflect the underlying molecular flexibility and composition. Vibrational sum frequency generation (SFG) spectroscopy and atomistic molecular dynamics (MD) simulations confirm solvent-driven reorientation of the end groups, with restructuring observed at the interface. To quantify these effects, we have developed a surface energy calculation model that incorporates solvent-induced surface rearrangements into the estimations. Our findings reveal a strong dependence of surface energy and switching behavior on the length and flexibility of the functionalities in the end group, which affects the exposure of certain interfacial compositions under different solvents. These results offer new insights into the design of adaptive monolayers and provide a framework for evaluating solvent-responsive surfaces.

摘要

由具有不同极性和非极性官能团的端基组成的两亲性单分子层能够响应环境刺激(如界面介质极性的变化),实现快速且可逆的界面适应性变化。我们合成并表征了一系列具有竞争极性官能团的单分子层,这些官能团旨在根据溶剂极性重新配置其界面化学成分。在这些薄膜中,端基的设计使其能够重新取向并暴露那些使薄膜与环境之间的界面自由能最小化的官能团。通过结合光谱学、计算和润湿性研究,我们研究了不同端基在暴露于不同极性环境时的响应界面行为。对一系列极性和分散性探针液体进行的接触角测量揭示了反映潜在分子柔韧性和组成的趋势。振动和频产生(SFG)光谱和原子分子动力学(MD)模拟证实了溶剂驱动的端基重新取向,并观察到界面处的结构重组。为了量化这些影响,我们开发了一种表面能计算模型,该模型将溶剂诱导的表面重排纳入估计中。我们的研究结果表明,表面能和切换行为强烈依赖于端基中官能团的长度和柔韧性,这会影响不同溶剂下某些界面组成的暴露情况。这些结果为自适应单分子层的设计提供了新的见解,并为评估溶剂响应表面提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae8c/12445002/ed59cde44af1/la5c03473_0001.jpg

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