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Aero-Thermo-Dynamic Mass Analysis

机译:航空热动态质量分析

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Each gas molecule has its own molecular weight, while such a microscopic characteristic is generally inaccessible, and thus, it is measured indirectly through e.g. ionization in conventional mass analysis. Here, we present a novel approach to the direct measurement of molecular weight through a nanoarchitectonic combination of aerodynamics, thermodynamics, and mechanics, transducing microscopic events into macroscopic phenomena. It is confirmed that this approach can provide molecular weight of virtually any gas or vaporizable liquid sample in real-time without ionization. Demonstrations through analytical calculations, numerical simulations, and experiments verify the validity and versatility of the novel mass analysis realized by a simple setup with a flexible object (e.g. with a bare cantilever and even with a business card) placed in a laminar jet. Owing to its unique and simple working principle, this aero-thermo-dynamic mass analysis (AMA) can be integrated into various analytical devices, production lines, and consumer mobile platforms, opening new chapters in aerodynamics, thermodynamics, mechanics, and mass analysis.
机译:每个气体分子具有其自身的分子量,而这种微观特性通常是不可接受的,因此,间接通过例如间接测量。常规质量分析中的电离。在这里,我们通过空气动力学,热力学和力学的纳米建筑学组合提出了一种新的分子量的直接测量方法,将微观事件转换为宏观现象。证实,该方法可以在没有电离的情况下实时地提供几乎任何气体或汽化液体样品的分子量。通过分析计算,数值模拟和实验的示范验证了一种具有柔性物体的简单设置(例如,带有裸露悬臂,甚至使用名片)实现的新型大规模分析的有效性和多功能性。由于其独特而简单的工作原理,这种航空热动态质量分析(AMA)可以集成到各种分析设备,生产线和消费者移动平台中,在空气动力学,热力学,机械和大规模分析中开设新章节。

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