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Single-particle mass spectrometry with arrays of frequency-addressed nanomechanical resonators

机译:具有频率寻址纳米机械谐振器阵列的单颗粒质谱

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摘要

One of the main challenges to overcome to perform nanomechanical mass spectrometry analysis in a practical time frame stems from the size mismatch between the analyte beam and the small nanomechanical detector area. We report here the demonstration of mass spectrometry with arrays of 20 multiplexed nanomechanical resonators; each resonator is designed with a distinct resonance frequency which becomes its individual address. Mass spectra of metallic aggregates in the MDa range are acquired with more than one order of magnitude improvement in analysis time compared to individual resonators. A 20 NEMS array is probed in 150 ms with the same mass limit of detection as a single resonator. Spectra acquired with a conventional time-of-flight mass spectrometer in the same system show excellent agreement. We also demonstrate how mass spectrometry imaging at the single-particle level becomes possible by mapping a 4-cm-particle beam in the MDa range and above.
机译:在实际的时间范围内执行纳米机械质谱分析需要克服的主要挑战之一是由于分析物束与较小的纳米机械检测器区域之间的尺寸不匹配。我们在这里报告了具有20个多路复用纳米机械谐振器阵列的质谱演示。每个谐振器都设计有不同的谐振频率,该频率成为其各自的地址。与单个谐振器相比,获得的MDa范围内金属聚集体的质谱分析时间缩短了一个数量级以上。在150?ms内探测20个NEMS阵列,其检测质量极限与单个谐振器相同。在同一系统中用常规飞行时间质谱仪获得的光谱显示出极好的一致性。我们还演示了如何通过在MDa范围及更高范围内映射4 cm粒子束来实现单粒子质谱成像。

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