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光响应偶氮吡唑单层的动态润湿由单层的分子动力学控制。

Dynamic Wetting of Photoresponsive Arylazopyrazole Monolayers is Controlled by the Molecular Kinetics of the Monolayer.

机构信息

Institute of Physical Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstraße 28/30, 48149 Münster, Germany.

Center of Soft Nanoscience, Westfälische Wilhelms-Universität Münster, Busso-Peus-Straße 10, 48149 Münster, Germany.

出版信息

J Am Chem Soc. 2022 Mar 9;144(9):4026-4038. doi: 10.1021/jacs.1c12832. Epub 2022 Feb 25.

Abstract

Smart surfaces that can change their wettability on demand are interesting for applications such as self-cleaning surfaces or lab-on-a-chip devices. We have synthesized arylazopyrazole (AAP) phosphonic acids as a new class of photoswitchable molecules for functionalization of aluminum oxide surfaces. AAP monolayers were deposited on α-AlO(0001) and showed reversible / photoswitching that can trigger contact angle changes of up to ∼10°. We monitored these changes on the macroscopic level by recording the contact angle while the monolayer was switched . On the molecular level, time-dependent vibrational sum-frequency generation (SFG) spectroscopy provided information on the kinetic changes within the AAP monolayer and the characteristic times for / switching. In addition, vibrational SFG at different relative humidity indicates that the thermal stability of the configuration is largely influenced by the presence of water which can stabilize the state and hinder → switching of the AAP monolayer when it is wetted with HO. Having established the switching times on the molecular scale, we additionally measured the dynamic contact angle and show that the time scales of the substrate and droplet dynamics can be extracted individually. For that, we report on a relaxation model that is solved analytically and is verified via a comparison with simulations of a Lennard-Jones system and with experimental data. The slower to switching in the presence of the droplet as compared to the vapor phase is rationalized in terms of specific interactions of water with the exposed AAP moieties.

摘要

能够按需改变润湿性的智能表面在自清洁表面或芯片实验室设备等应用中很有趣。我们合成了芳基偶氮吡唑(AAP)膦酸作为一种新的光致变色分子,用于功能化氧化铝表面。AAP 单层沉积在 α-AlO(0001)上,表现出可逆/光致变色,可触发接触角变化高达约 10°。我们通过记录单层切换时的接触角在宏观水平上监测这些变化。在分子水平上,时间分辨振动和频产生(SFG)光谱提供了关于 AAP 单层内动力学变化的信息以及 / 切换的特征时间。此外,在不同相对湿度下的振动 SFG 表明, 构象的热稳定性在很大程度上受到水的存在的影响,水可以稳定 态并阻碍 HO 润湿时 AAP 单层的 → 切换。在分子尺度上建立了切换时间后,我们还测量了动态接触角,并表明可以单独提取基底和液滴动力学的时间尺度。为此,我们报告了一个松弛模型,该模型通过与 Lennard-Jones 系统的模拟和实验数据进行比较进行了分析验证。与气相相比,液滴存在时从 到 的切换较慢,这可以根据水与暴露的 AAP 部分的特定相互作用来合理化。

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