Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523 United States.
Department of Soil and Crop Sciences, Colorado State University, Fort Collins, Colorado 80523-1170, United States.
Anal Chem. 2022 Aug 16;94(32):11382-11389. doi: 10.1021/acs.analchem.2c02377. Epub 2022 Aug 2.
Fourier transform ion-cyclotron resonance mass spectrometry (FT-ICR MS) is the only mass analyzer that can resolve the molecular complexity of natural organic matter at the level of elemental composition assignment. Here, we leverage the high dynamic range, resolving power, resistance to peak coalescence, and maximum ion number and ion trapping duration in a custom built, 21 tesla hybrid linear ion trap /FT-ICR mass spectrometer for a dissolved organic matter standard (Suwanne River Fulvic Acid). We compare the effect of peak-picking threshold (3σ, 4σ, 5σ, and 6σ) on number of elemental composition assignments, mass measurement accuracy, and dynamic range for a 6.3 s transient across the mass range of / 200-1200 that comprises the highest achieved resolving power broadband FT-ICR mass spectrum collected to date. More than 36 000 species are assigned with signal magnitude greater than 3σ at root-mean-square mass error of 36 ppb, the most species identified reported to date for dissolved organic matter. We identify O and O isotopologues and resolve isobaric overlaps on the order of a few electrons across a wide mass range (up to / 1000) leveraging mass resolving powers (3 000 000 at 200) only achievable by 21 T FT-ICR MS and increased by ∼30% through absorption mode data processing. Elemental compositions unique to the 3σ span a wide compositional range of aromaticity not detected at higher peak-picking thresholds. Furthermore, we leverage the high dynamic range at 21 T FT-ICR MS to provide a molecular catalogue of a widely utilized reference standard (SRFA) to the analytical community collected on the highest performing mass analyzer for complex mixture analysis to date. This instrument is available free of charge to scientists worldwide.
傅里叶变换离子回旋共振质谱(FT-ICR MS)是唯一能够在元素组成赋值水平上解析天然有机物分子复杂性的质谱仪。在这里,我们利用高动态范围、分辨率、抗峰合并能力以及在定制的 21 特斯拉混合线性离子阱/FT-ICR 质谱仪中实现的最大离子数和离子捕获持续时间,对溶解有机物标准品(苏万尼河富里酸)进行分析。我们比较了峰选阈值(3σ、4σ、5σ 和 6σ)对元素组成赋值数量、质量测量精度和动态范围的影响,该阈值用于在 6.3 秒瞬变过程中跨越质量范围 200-1200,这是迄今为止采集到的最高分辨率宽带 FT-ICR 质谱。在均方根质量误差为 36 ppb 的情况下,超过 36000 种具有大于 3σ 信号幅度的物种被分配,这是迄今为止报道的溶解有机物中鉴定出的最多物种。我们利用只有 21 T FT-ICR MS 才能实现的质量分辨率(在 200 时为 300 万)和通过吸收模式数据处理提高了约 30%的分辨率,识别了 O 和 O 同量异位素,并在很宽的质量范围内(高达 1000)解析了几个电子的等电子重叠。在更高的峰选阈值下无法检测到的宽芳香度范围内,3σ 跨度的元素组成是独特的。此外,我们利用 21 T FT-ICR MS 的高动态范围,为分析社区提供了广泛使用的参考标准(SRFA)的分子目录,这是迄今为止用于复杂混合物分析的性能最高的质谱仪。该仪器可供全球科学家免费使用。