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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Lipid domain pixelation patterns imposed by e-beam fabricated substrates
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Lipid domain pixelation patterns imposed by e-beam fabricated substrates

机译:电子束制造基板施加的脂质域像素化图案

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摘要

This work describes a technique for forming nanometer-scale pixilated lipid domains that are self-organized into geometric patterns residing on a square lattice. In this process, a lipid multibilayer stack is deposited onto a silica substrate patterned with a square lattice array of bumps, hemispherical on their sides, formed by electron beam lithography. Domain patterns are shown to be confined to the flat grid between the bumps and composed of connected and individual domain pixels. Analysis of lattices of varying sizes shows that domain pattern formation is driven by mechanical energy minimization and packing constraints. We demonstrate single lattice sizes and a gradient in lattice size varying from the micrometer to the 100 nm scale applicable to precise arraying, patterning, and transport of biomolecules that partition to lipid domains.
机译:这项工作描述了一种用于形成纳米级像素化脂质域的技术,该域自组织成正方形格子上的几何图案。在此过程中,将脂质多层膜堆叠体沉积到二氧化硅基板上,该基板上形成有由电子束光刻形成的,在其侧面呈半球形的凸点的方形格子阵列,并在其上形成半球形。示出域图案被限制在凸块之间的平坦网格上,并且由相连的和单独的域像素组成。分析各种尺寸的晶格表明,畴图案的形成受机械能最小化和堆积约束的驱动。我们展示了单个晶格的大小和从微米到100 nm尺度变化的晶格大小的梯度,适用于精确排列,构图和转运到脂质结构域的生物分子。

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