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Seeing through Walls at the Nanoscale: Microwave Microscopy of Enclosed Objects and Processes in Liquids

机译:透过纳米尺度的墙壁看:液体中封闭物体和过程的微波显微镜

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Noninvasive in situ nanoscale imaging in liquid environments is a current imperative in the analysis of delicate biomedical objects and electrochemical processes at reactive liquid solid interfaces. Microwaves of a few gigahertz frequencies offer photons with energies of approximate to 10 mu eV, which can affect neither electronic states nor chemical bonds in condensed matter. Here, we describe an implementation of scanning near-field microwave microscopy for imaging in liquids using ultrathin molecular impermeable membranes separating scanning probes from samples enclosed in environmental cells. We imaged a model electroplating reaction as well as individual live cells. Through a side-by-side comparison of the microwave imaging with scanning electron microscopy, we demonstrate the advantage of microwaves for artifact-free imaging.
机译:液体环境中的非侵入性原位纳米级成像是目前分析活性液体固体界面上的精细生物医学对象和电化学过程的当务之急。几个千兆赫频率的微波所提供的光子能量大约为10μeV,既不会影响电子态,也不会影响凝聚态的化学键。在这里,我们描述了使用超薄分子不可渗透膜将扫描探针与封闭在环境电池中的样品分离开来的扫描近场微波显微镜在液体中成像的实现。我们对模型电镀反应以及单个活细胞进行了成像。通过微波成像与扫描电子显微镜的并排比较,我们证明了微波在无伪影成像方面的优势。

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