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纳米材料在水溶液中的快速结构分析。

Rapid structural analysis of nanomaterials in aqueous solutions.

出版信息

Nanotechnology. 2017 Apr 18;28(15):155501. doi: 10.1088/1361-6528/aa5e66.

Abstract

Rapid structural analysis of nanoscale matter in a liquid environment represents innovative technologies that reveal the identities and functions of biologically important molecules. However, there is currently no method with high spatio-temporal resolution that can scan individual particles in solutions to gain structural information. Here we report the development of a nanopore platform realizing quantitative structural analysis for suspended nanomaterials in solutions with a high z-axis and xy-plane spatial resolution of 35.8 ± 1.1 and 12 nm, respectively. We used a low thickness-to-diameter aspect ratio pore architecture for achieving cross sectional areas of analyte (i.e. tomograms). Combining this with multiphysics simulation methods to translate ionic current data into tomograms, we demonstrated rapid structural analysis of single polystyrene (Pst) beads and single dumbbell-like Pst beads in aqueous solutions.

摘要

在液体环境中快速分析纳米级物质的结构代表了一种创新技术,可以揭示生物重要分子的身份和功能。然而,目前还没有一种具有高时空分辨率的方法可以扫描溶液中的单个颗粒以获取结构信息。在这里,我们报告了一种纳米孔平台的开发,该平台实现了对悬浮纳米材料在溶液中的定量结构分析,具有高 z 轴和 xy 平面空间分辨率,分别为 35.8±1.1nm 和 12nm。我们使用低厚度与直径的纵横比孔结构来实现分析物的横截面面积(即断层扫描)。结合多物理模拟方法,将离子电流数据转换为断层扫描,我们演示了在水溶液中对单个聚苯乙烯(Pst)珠和单个哑铃状 Pst 珠的快速结构分析。

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