Walker Jim S, Bzdek Bryan R
School of Chemistry, University of Bristol, Bristol BS8 1TS, United Kingdom.
Anal Chem. 2025 Jan 14;97(1):854-861. doi: 10.1021/acs.analchem.4c05458. Epub 2024 Dec 24.
Aerosol droplets are unique microcompartments containing microscopic amounts of material and exhibiting surprising chemical reactivity. Although a diverse set of tools exists to characterize the chemical composition of individual submicron particles in air, comparatively fewer approaches can chemically analyze individual, airborne picolitre droplets. We describe a novel approach for mass spectrometric analysis of individual aqueous picolitre droplets (∼2-180 pL volume) containing down to ∼1 pg analyte mass per droplet. Individual droplets are generated using a microdroplet dispenser, imparted a small amount of net charge, and guided to the inlet of a high-resolution mass spectrometer using a linear quadrupole-electrodynamic balance. Analyte molecules within the aqueous droplet are ionized using droplet assisted ionization, where droplet breakup within the mass spectrometer inlet leads to generation of molecular ions. This single droplet mass spectrometry approach is demonstrated for small molecules and proteins. The approach generates clean mass spectra, permits timing of droplet delivery for chemical analysis, and, by avoiding a separate ionization stage, avoids potential artifacts arising from current electrospray-based approaches for picolitre droplet analysis. It is anticipated this approach will permit exploration of the factors governing accelerated chemical reactions in aerosol droplets and will be suitable for sensitive analysis of particularly precious samples in different application domains.
气溶胶液滴是独特的微隔室,含有微量物质并表现出惊人的化学反应性。尽管有多种工具可用于表征空气中单个亚微米颗粒的化学成分,但能够对单个空气中的皮升液滴进行化学分析的方法相对较少。我们描述了一种用于对单个含水皮升液滴(体积约为2 - 180皮升)进行质谱分析的新方法,每个液滴中分析物质量低至约1皮克。使用微滴分配器产生单个液滴,赋予其少量净电荷,并使用线性四极杆 - 电动平衡将其引导至高分辨率质谱仪的入口。液滴内的分析物分子使用液滴辅助电离进行电离,其中质谱仪入口内的液滴破裂导致分子离子的产生。这种单液滴质谱方法已在小分子和蛋白质上得到验证。该方法产生清晰的质谱图,允许对液滴进行定时以便进行化学分析,并且通过避免单独的电离阶段,避免了当前基于电喷雾的皮升液滴分析方法可能产生的伪像。预计这种方法将有助于探索控制气溶胶液滴中加速化学反应的因素,并适用于不同应用领域中对特别珍贵样品的灵敏分析。