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Experiment and theory confirm that UV laser photodissociation spectroscopy can distinguish protomers formed via electrospray

机译:实验和理论证实,紫外激光光解离光谱可以区分通过电喷雾形成的原体

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摘要

The identification of protonation sites in electrosprayed molecules remains a challenge in contemporary physical science. We present the first demonstration that low-resolution, UV laser photodissociation spectroscopy can be applied in situ to identify the protomers of para-aminobenzoic acid (PABA) formed via electrospray from a single solution. Electronic absorption spectra are recorded via photodepletion and photofragmentation for PABA electrosprayed from solutions of water and acetonitrile. Using this approach, two protomers can be straightforwardly identified, with only the carboxylic acid protomer being produced on electrospray from water while the amine-protonated isomer dominates upon electrospray from acetonitrile. High-level SORCI and MRCI calculations are presented to provide insight into the origin of the distinctive electronic spectra displayed by the protomers. Our results are in excellent agreement with previous PABA studies conducted using established techniques, and demonstrate that UV photodissociation spectroscopy of electrosprayed ions has potential as a new diagnostic tool for identifying protomeric species.
机译:在电喷雾分子中质子化位点的鉴定仍然是当代物理科学中的挑战。我们目前的第一个证明是,低分辨率,紫外激光光解光谱技术可以原位应用,以鉴定通过电喷雾从单一溶液中形成的对氨基苯甲酸(PABA)的前驱体。通过从水和乙腈溶液中电喷雾的PABA,通过光耗竭和光碎裂记录电子吸收光谱。使用这种方法,可以直接鉴定出两个原质子,其中仅在水上通过电喷雾生产羧酸原质子,而胺质子化的异构体在从乙腈电喷雾中占主导。提出了高级SORCI和MRCI计算,以提供对由protomer显示的独特电子光谱的起源的见解。我们的结果与以前使用已建立的技术进行的PABA研究非常吻合,并证明了电喷雾离子的紫外光解离光谱法有潜力作为鉴定原型物种的新诊断工具。

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