论文标题
实现冷冻水的接近原子尺度分析
Enabling near-atomic-scale analysis of frozen water
论文作者
论文摘要
近年来,透射电子显微镜进行了一场革命,有可能对生物材料和(Bio)化学系统进行常规的冷冻成像,以及通过专用反应细胞或石墨烯 - 桑德威奇对液体进行成像的可能性。但是,这些方法通常需要成像大量标本并重建平均表示形式,并且通常缺乏分析能力。在这里,使用原子探针断层扫描,我们对冷冻液体和分析次纳米三维重建进行逐个原子分析。分析的冰与纳米孔黄金(NPG)接触并嵌入。我们在2-3微米厚的冰层上报告了第一个此类数据,这些冰层是由高纯度氘化水和50mm NaCl的溶液中高纯度剥离水的溶液。我们提出了一种使用NPG膜的标本制备策略,此外,我们报告了纳米孔黄金和冷冻盐水溶液之间的界面分析,其Na和Cl浓度在整个界面上具有明显的趋势。我们探索了一系列实验参数,以表明大量水样标本的原子探针分析带有其自身的特殊挑战,并讨论了可能产生观察到现象的物理过程。我们的研究表明,使用冷冻水作为通过Atom探针断层扫描对溶液中对象的近原子量表进行分析的生存能力。
Transmission electron microscopy has undergone a revolution in recent years with the possibility to perform routine cryo-imaging of biological materials and (bio)chemical systems, as well as the possibility to image liquids via dedicated reaction cells or graphene-sandwiching. These approaches however typically require imaging a large number of specimens and reconstructing an average representation and often lack analytical capabilities. Here, using atom probe tomography we provide atom-by-atom analyses of frozen liquids and analytical sub-nanometre three dimensional reconstructions. The analyzed ice is in contact with, and embedded within, nanoporous gold (NPG). We report the first such data on 2-3 microns thick layers of ice formed from both high purity deuterated water and a solution of 50mM NaCl in high purity deuterated water. We present a specimen preparation strategy that uses a NPG film and, additionally, we report on an analysis of the interface between nanoporous gold and frozen salt water solution with an apparent trend in the Na and Cl concentrations across the interface. We explore a range of experimental parameters to show that the atom probe analyses of bulk aqueous specimens come with their own special challenges and discuss physical processes that may produce the observed phenomena. Our study demonstrates the viability of using frozen water as a carrier for near-atomic scale analysis of objects in solution by atom probe tomography.