Suppr超能文献

从对流组装到可控厚度多层磷脂膜的朗道-列维奇沉积。

From convective assembly to Landau-Levich deposition of multilayered phospholipid films of controlled thickness.

作者信息

Le Berre Maël, Chen Yong, Baigl Damien

机构信息

Department of Chemistry, Ecole Normale Supérieure, 24 rue Lhomond, 75005 Paris, France.

出版信息

Langmuir. 2009 Mar 3;25(5):2554-7. doi: 10.1021/la803646e.

Abstract

In this letter, we describe a method to control the organization and thickness of multilayered phospholipid films. The meniscus of an organic solution of phospholipid molecules was dragged at a speed v on a solid substrate under controlled temperature and forced convection, leading to the deposition of a dried multilayered phospholipid film with a thickness h in the range of 20-200 nm. We found two distinct regimes dominating the film deposition. At low speeds, phospholipid molecules accumulate near the contact line and form a dry film behind the meniscus (evaporation regime). At high speed, viscous forces become predominant and pull out a liquid film that will dry afterward (Landau-Levich regime). Both regimes show robust scaling h infinity v(alpha) with alpha = -1.1 and 0.76, respectively. Although these regimes have been observed separately in the past, they have not been demonstrated in the same material system. Moreover, we present models whose scalings (alpha = -1 and 2/3) are in close agreement with the observed values. The microscale organization of the resulting film is independent of v for a given regime but differs from one regime to another. In the Landau-Levich regime, h is very homogeneous on the microscale with discrete variations of +/- 5 nm, that is, the thickness of one bilayer.

摘要

在这封信中,我们描述了一种控制多层磷脂膜的组织结构和厚度的方法。在可控温度和强制对流条件下,以速度v拖动磷脂分子有机溶液的弯月面在固体基质上移动,从而沉积出厚度h在20 - 200 nm范围内的干燥多层磷脂膜。我们发现有两种不同的机制主导着膜的沉积过程。在低速时,磷脂分子在接触线附近聚集,并在弯月面后方形成干膜(蒸发机制)。在高速时,粘性力占主导地位,并拉出一层随后会干燥的液膜(朗道 - 列维奇机制)。这两种机制都呈现出稳健的标度关系h ∝ v^α,其中α分别为 -1.1和0.76。尽管过去曾分别观察到这些机制,但它们尚未在同一材料体系中得到证实。此外,我们提出的模型其标度指数(α = -1和2/3)与观测值非常吻合。对于给定的机制,所得薄膜的微观组织结构与v无关,但不同机制之间存在差异。在朗道 - 列维奇机制中,h在微观尺度上非常均匀,离散变化为±5 nm,即一个双层的厚度。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验