Probing Langmuir monolayer self-assembly in condensed and collapsed phases: grazing-incidence X-ray diffraction and X-ray standing wave studies

IF 5.2 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
K. V. Nikolaev, L. R. Muftakhova, G. M. Kuz'micheva, Y. N. Malakhova, A. V. Rogachev, N. N. Novikova, S. N. Yakunin
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引用次数: 0

Abstract

Cerium-induced effects on the self-assembly of arachidic acid monolayers have been studied. The monolayers were formed on a cerium nitrate solution and studied in condensed and collapsed phases at two different temperatures, T = 21°C and T = 23°C. Grazing-incidence X-ray diffraction and X-ray standing waves were applied to monitor the changes in molecular packing in real time. A new type of molecular organization was found, in which the monolayer maintains its structure despite being overcompressed. Instead of forming crystalline aggregates or anisotropic cracking, the collapsed monolayer at T = 21°C appeared to be corrugated. The diffraction pattern for the monolayer in this new collapse mode is represented by unclosed diffraction rings with maxima near Qz = 0. A theoretical formalism based on the distorted-wave Born approximation has been developed for quantitative analysis of the full 2D maps of diffraction scattering. The collapsed monolayer at T = 21°C is shown to consist of flat crystalline domains, which are inclined from the horizontal position. The crystalline structure of one such domain was identified as a pseudo-herringbone packing mode.

在凝聚态和坍缩相中探测Langmuir单层自组装:掠入射x射线衍射和x射线驻波研究
研究了铈对花生酸单分子膜自组装的影响。在21℃和23℃两种不同的温度条件下,在硝酸铈溶液中形成单分子膜,并在凝聚相和坍塌相下进行了研究。利用掠入射x射线衍射和x射线驻波技术实时监测分子堆积的变化。发现了一种新的分子结构,在这种分子结构中,单层膜尽管被过度压缩,但仍能保持其结构。在T = 21℃时,坍塌的单层呈现波纹状,而不是形成结晶聚集体或各向异性开裂。在这种新的坍缩模式下,单分子层的衍射图由在Qz = 0附近有最大值的不闭合衍射环来表示。提出了一种基于畸变波玻恩近似的二维衍射散射全图定量分析的理论形式。在T = 21°C时坍塌的单层显示由平面晶域组成,这些晶域从水平位置倾斜。其中一个区域的晶体结构被确定为伪人字形堆积模式。
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来源期刊
Journal of Applied Crystallography
Journal of Applied Crystallography CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
7.80
自引率
3.30%
发文量
178
期刊介绍: Many research topics in condensed matter research, materials science and the life sciences make use of crystallographic methods to study crystalline and non-crystalline matter with neutrons, X-rays and electrons. Articles published in the Journal of Applied Crystallography focus on these methods and their use in identifying structural and diffusion-controlled phase transformations, structure-property relationships, structural changes of defects, interfaces and surfaces, etc. Developments of instrumentation and crystallographic apparatus, theory and interpretation, numerical analysis and other related subjects are also covered. The journal is the primary place where crystallographic computer program information is published.
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