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Pattern Formation in Fatty Acid-Nanoparticle and Lipid- Nanoparticle Mixed Monolayers at Water Surface

机译:脂肪酸纳米粒子和脂质纳米粒子混合单层在水表面的图案形成

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摘要

Dodecanethiol-capped gold nanoparticles (AuNPs) are self-organized in two different amphiphilic monolayers one of which is a single-tailed fatty acid Stearic acid (StA) and the other a double-tailed lipid 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC). In the StA-AuNP film the AuNPs self-organize to form an interconnected network of nanoclusters on compression while in the DMPC-AuNP film the AuNPs aggregate to form random, isolated clusters in the film. The long time evolution of the films at constant surface pressure reveals ring structures in the former and diffusion limited aggregates in the latter that with time evolve into an irregular porous maze of AuNPs in the DMPC film. The difference in structure of the AuNP patterns in the two films can be attributed to a difference in the lipophilic interactions between the NPs and the amphiphilic molecules. The mean square intensity fluctuations f(1_n) calculated along a typical line for the 2D structures in both the films at initial and final stages of long time evolution reflect the structural changes in the films over time.
机译:十二烷硫醇封端的金纳米颗粒(aUnps)在两种不同的两亲型单层中自组织,其中一个是单尾脂肪酸硬脂酸(STA),另一个是双尾脂质1,2-Dimyristoyl-Sn-甘油 - 3-磷光啉(DMPC)。在STA-AUNP薄膜中,AUNPS自组织以形成压缩的互联网网络,而在DMPC-AUNP膜中,在膜中形成随机,膜中的隔离簇。恒定表面压力下薄膜的长时间演化揭示了前者中的环结构,并且在后者中的扩散有限的聚集体在DMPC膜中的肛门腔的不规则多孔迷宫中呈现。两种膜中的AUNP图案结构的结构差异可归因于NPS和两亲分子之间的亲脂相互作用的差异。沿着长时间演进的初始和最终阶段的膜中的2D结构沿2D结构计算的平均方强度波动F(1_N)反映了电影随时间的结构变化。

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