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Atomic Force Microscope Controlled Topographical Imaging and Proximal Probe Thermal Desorption/Ionization Mass Spectrometry Imaging

机译:原子力显微镜控制的地形成像和近端探针热脱附/电离质谱成像

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This paper reports on the development of a hybrid atmospheric pressure atomic force microscopy/mass spectrometry imaging system utilizing nanothermal analysis probes for thermal desorption surface sampling with subsequent atmospheric pressure chemical ionization and mass analysis. The basic instrumental setup and the general operation of the system were discussed, and optimized performance metrics were presented. The ability to correlate topographic images of a surface with atomic force microscopy and a mass spectral chemical image of the same surface, utilizing the same probe without moving the sample from the system, was demonstrated. Co-registered mass spectral chemical images and atomic force microscopy topographical images were obtained from inked patterns on paper as well as from a living bacterial colony on an agar gel. Spatial resolution of the topography images based on pixel size (0.2 μm × 0.8 μm) was better than the resolution of the mass spectral images (2.5 μm × 2.0 μm), which were limited by current mass spectral data acquisition rate and system detection levels.
机译:本文报道了使用纳米热分析探针进行热脱附表面采样以及随后的大气压化学电离和质量分析的混合大气压原子力显微镜/质谱成像系统的开发。讨论了基本的仪器设置和系统的一般操作,并提出了优化的性能指标。证明了使用相同的探针,无需移动系统中的样品,即可利用原子力显微镜将表面的地形图像与同一表面的质谱化学图像相关联的能力。从纸上的着墨图案以及琼脂凝胶上的活细菌菌落中获得了配准的质谱化学图像和原子力显微镜形貌图像。基于像素尺寸(0.2μm×0.8μm)的地形图像的空间分辨率要好于质谱图像(2.5μm×2.0μm)的分辨率,后者受到当前质谱数据采集速率和系统检测水平的限制。

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