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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Simulation of Mixed Self-Assembled Monolayers on Gold: Effect of Terminal Alkyl Anchor Chain and Monolayer Composition
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Simulation of Mixed Self-Assembled Monolayers on Gold: Effect of Terminal Alkyl Anchor Chain and Monolayer Composition

机译:混合自组装单层对金的仿真:末端烷基锚链和单层组成的影响

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摘要

Self-assembling monolayers provide a reproducible synthetic microenvironment for tethering lipid bilayers to incorporate proteins and lay the ground for numerous applications in nanotechnology and biomedical engineering. Although the structure of single-component monolayers is well investigated, there is far less insight into the molecular behavior at the interface of mixed monolayers at different mole fractions. Here, we present and apply a novel procedure to simulate and analyze multicomponent self-assemblies of alkanethiols over a wide range of mole concentrations of anchoring compounds. In particular, the structural features of monolayers consisting of a matrix compound and either a short (C-8) or a long (C-16) anchor compound on Au(111)-like surfaces were investigated first using coarse-grained and subsequently full-atomistic molecular dynamics simulations. Different scenarios of spatial distributions (random vs clustering) of anchoring molecules on flat surfaces were probed. The results of the simulations are in excellent agreement with the experimental data from ellipsometry and infrared reflection absorption spectroscopy. For short anchoring molecules, a random spatial distribution in the matrix is obtained. At low, experimentally relevant anchor compound mole fractions 0.1, only for long-chain (C-16)-terminal alkyls, phase segregation and self-association of the anchoring molecules can be observed, which are also seen in experiment.
机译:自组装单层提供一种可重复的合成微环境,用于培养脂质双层,以掺入蛋白质并将其铺设在纳米技术和生物医学工程中的许多应用。尽管单组分单层的结构良好地研究,但在不同摩尔级分的混合单层界面处的分子行为远远较小。在这里,我们展示并应用一种新的程序来模拟和分析在锚固化合物的各种摩尔浓度的广泛摩尔浓度上的碱性自组装。特别地,首先使用粗粒和随后的全部研究Au(111)型表面上的基质化合物和短(C-8)或长(C-8)锚化合物的单层组成的单层的结构特征。 - 陶瓷分子动力学模拟。探测了平面上锚固分子上的空间分布(随机vs聚类)的不同场景。模拟结果与来自椭圆形测定法和红外反射吸收光谱的实验数据很好。对于短锚定分子,获得基质中的随机空间分布。在低,实验相关的锚固化合物摩尔级分& 0.1,仅针对长链(C-16) - 终烷基,可以观察到锚定分子的相偏析和自我关联,在实验中也观察到。

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