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通过X射线技术揭示的朗缪尔单分子层及相应的朗缪尔-布洛杰特膜的结构亲和力。

Structure affinity of the Langmuir monolayer and the corresponding Langmuir-Blodgett film revealed by X-ray techniques.

作者信息

Alexandrova Alvina V, Shcherbina Maxim A, Repchenko Yuriy L, Selivantiev Yuriy M, Shokurov Alexander V, Arslanov Vladimir V, Selektor Sofiya L

机构信息

A.N. Frumkin Institute of Physical Chemistry and Electrochemistry of Russian Academy of Sciences, Moscow, Russia.

N.S. Enikopolov Institute of Synthetic Polymer Materials of Russian Academy of Sciences, Moscow, Russia.

出版信息

Soft Matter. 2024 Nov 6;20(43):8601-8609. doi: 10.1039/d4sm01050g.

Abstract

The possibility of reproducing the structural organization and functional abilities of a Langmuir monolayer in a film formed from it is one of the fundamental problems of ultrathin film science. This work is devoted to the comparison of monolayer and Langmuir-Blodgett (LB) film characteristics using the example of 2D systems based on the dithia-aza-crown substituted hemicyanine dye HCS. As was shown earlier, the investigated systems are promising for the preparation of selective sensors and extractors for mercury ions in aqueous solutions with a subnanomolar sensitivity threshold. Therefore, the study of the analyte binding mechanism by such a film is of great importance. The study carried out using an ultra-highly brilliant X-ray source (ESRF) allows the application of highly sensitive techniques such as X-ray reflectometry (XRR) and X-ray standing wave (XSW). Comparison of the electron density depth profile of the HCS Langmuir monolayer at the air/water interface and the HCS film transferred to a silicon substrate shows the preservation of the film structure and its functional features. The XSW measurements in turn reveal the similarities in the fine structure of preorganized Langmuir monolayers and Langmuir-Blodgett films of HCS. The integration of X-ray techniques with molecular modeling methods allowed us to show that the crown-ether groups of HCS molecules in the pre-organized monolayer and in the corresponding LB film lie on the surface of water or silicon, and the bound mercury ion is located above the crown-ether, partially binding to the nitrogen atom. The latter loses conjugation to the chromophore group, thereby altering the UV-vis spectrum and providing a response signal. The revealed mechanism of imprinting preorganization allows the proposed approach to be extended to other crown-substituted amphiphilic dyes to significantly enhance the sensory response.

摘要

由Langmuir单分子层形成的薄膜能否重现其结构组织和功能特性,是超薄膜科学的基本问题之一。本文以基于二硫氮杂冠醚取代半菁染料HCS的二维体系为例,致力于比较单分子层与Langmuir-Blodgett(LB)膜的特性。如前所示, 所研究的体系有望制备对水溶液中汞离子具有亚纳摩尔灵敏度阈值的选择性传感器和萃取剂。因此,研究此类薄膜与分析物的结合机制具有重要意义。使用超高亮度X射线源(ESRF)进行的研究允许应用高灵敏度技术,如X射线反射率(XRR)和X射线驻波(XSW)。比较空气/水界面处HCS Langmuir单分子层和转移到硅衬底上的HCS薄膜的电子密度深度分布,结果表明薄膜结构及其功能特性得以保留。XSW测量反过来揭示了预组织的Langmuir单分子层和HCS的Langmuir-Blodgett薄膜在精细结构上的相似性。X射线技术与分子建模方法的结合使我们能够表明,预组织单分子层和相应LB薄膜中HCS分子的冠醚基团位于水或硅的表面,而结合的汞离子位于冠醚上方,部分与氮原子结合。后者失去了与发色团的共轭,从而改变了紫外可见光谱并提供了响应信号。所揭示的预组织印迹机制使所提出的方法能够扩展到其他冠醚取代的两亲染料,以显著增强传感响应。

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