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2D dynamical arrest transition in a mixed nanoparticle-phospholipid layer studied in real and momentum spaces

机译:在真实和动量空间中研究的混合纳米颗粒-磷脂层中的二维动态阻滞跃迁

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摘要

We investigate the interfacial dynamics of a 2D self-organized mixed layer made of silica nanoparticles interacting with phospholipid (DPPC) monolayers at the air/water interface. This system has biological relevance, allowing investigation of toxicological effects of nanoparticles on model membranes and lung surfactants. It might also provide bio-inspired technological solutions, exploiting the self-organization of DPPC to produce a non-trivial 2D structuration of nanoparticles. The characterization of interfacial dynamics yields information on the effects of NPs on the mechanical properties, important to improve performances of systems such as colloidosomes, foams, creams. For this, we combine micro-tracking in real-space with measurement in momentum-space via x-ray photon-correlation spectroscopy and Digital Fourier Microscopy. Using these complementary techniques, we extend the spatial range of investigation beyond the limits of each one. We find a dynamical transition from Brownian diffusion to an arrested state driven by compression, characterized by intermittent rearrangements, compatible with a repulsive glass phase. The rearrangement and relaxation of the monolayer structure results dramatically hindered by the presence of NPs, which is relevant to explain some the mechanical features observed for the dynamic surface pressure response of these systems and which can be relevant for the respiratory physiology and for future drug-delivery composite systems.
机译:我们研究了由二氧化硅纳米颗粒与磷脂(DPPC)单层在空气/水界面处相互作用形成的二维自组织混合层的界面动力学。该系统具有生物学相关性,可以研究纳米颗粒对模型膜和肺表面活性剂的毒理作用。它还可以提供生物启发性的技术解决方案,利用DPPC的自组织产生纳米粒子的非平凡2D结构。界面动力学的表征产生了关于NP对机械性能的影响的信息,这对于改善诸如胶体,泡沫,乳膏等系统的性能非常重要。为此,我们将真实空间中的微跟踪与动量空间中的测量(通过X射线光子相关光谱法和数字傅里叶显微镜)相结合。使用这些补充技术,我们将研究的空间范围扩展到每个范围之外。我们发现了从布朗扩散到由压缩驱动的停滞状态的动态过渡,其特征是间歇性重排,与排斥性玻璃相兼容。 NP的存在极大地阻碍了单层结构的重排和松弛,这与解释这些系统的动态表面压力响应所观察到的一些机械特征有关,并且可能与呼吸生理学以及未来的药物相关。交付复合系统。

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