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Toward the Atomic-Level Mass Analysis of Biomolecules by the Scanning Atom Probe

机译:扫描原子探针朝向生物分子的原子级别分析

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In 1994, a new type of atom probe instrument, named the scanning atom probe (SAP), was proposed. The unique feature of the SAP is the introduction of a small extraction electrode, which scans over a specimen surface and confines the high field, required for field evaporation of surface atoms in a small space, between the specimen and the electrode. Thus, the SAP does not require a sharp specimen tip. This indicates that the SAP can mass analyze the specimens which are difficult to form in a sharp tip, such as organic materials and biomolecules. Clean single wall carbon nanotubes (CNT), made by high-pressure carbon monoxide process are found to be the best substrates for biomolecules. Various amino acids and dipeptide biomolecules were successfully mass analyzed, revealing characteristic clusters formed by strongly bound atoms in the specimens. The mass analysis indicates that SAP analysis of biomolecules is not only qualitative, but also quantitative.
机译:在1994年,提出了一种新型的原子探针仪,命名为扫描原子探针(SAP)。 SAP的独特特征是引入小型提取电极,该电极扫描样品表面并限制了在小空间中的场蒸发所需的高场,在样品和电极之间。 因此,SAP不需要尖锐的标本尖端。 这表明SAP可以质谱分析难以形成在尖锐尖端的样本,例如有机材料和生物分子。 清洁单壁碳纳米管(CNT),由高压一氧化碳过程制成,是生物分子的最佳底物。 成功分析了各种氨基酸和二肽生物分子,揭示了试样中强烈原子形成的特征簇。 批量分析表明生物分子的SAP分析不仅是定性的,而且是定量的。

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