Qiu Lingqi, Saha Mousumi, Kraft Stefan, Dziekonski Eric T, Welch Christopher J, Dai Yumin, Kaerner Andreas, Cooks R Graham
Department of Chemistry, Purdue University, West Lafayette, IN 47907, USA.
Evonik Industries, Lafayette, IN 47909, USA.
Angew Chem Int Ed Engl. 2023 Nov 20;62(47):e202310884. doi: 10.1002/anie.202310884. Epub 2023 Oct 16.
This study uses a rapid tandem mass-spectrometry method to determine water content in complex organic solutions. Emphasis is placed on trace-water analysis by a fast and accurate alternative to the Karl-Fischer method. In this new method, water is captured by a charge-labeled molecular probe. Water binds strongly with high specificity to the strongly electrophilic aldehyde site in a charge-labelled molecule (N-methylpyridinium); competitive binding by other analytes is effectively discriminated against in the mass-measurement step. Quantitative determinations are made over a wide concentration range, 0.001 % (10 ppm) to 99 %, with better than 10 % relative standard deviation, along with short (1 min) analysis times using small sample volumes (several μL). Applications include water measurement in simple organic solvents, for example, deuterated solvents, as well as in complex mixtures, for example, organic reaction mixtures. Additionally, this method allows for water monitoring in levitated droplets. Mechanistic investigations into the impact of water on important chemical processes in organic synthesis and environmental science are reported.
本研究采用快速串联质谱法测定复杂有机溶液中的含水量。重点在于通过一种快速准确的卡尔费休法替代方法进行痕量水分析。在这种新方法中,水被一种电荷标记的分子探针捕获。水与电荷标记分子(N-甲基吡啶鎓)中强亲电醛基以高特异性紧密结合;在质量测量步骤中有效区分了其他分析物的竞争性结合。在0.001%(10 ppm)至99%的宽浓度范围内进行定量测定,相对标准偏差优于10%,同时使用小样本体积(几微升)时分析时间短(1分钟)。应用包括在简单有机溶剂(如氘代溶剂)以及复杂混合物(如有机反应混合物)中进行水含量测定。此外,该方法还可用于悬浮液滴中的水监测。报道了关于水对有机合成和环境科学中重要化学过程影响的机理研究。