Tomaník Lukáš, Pugini Michele, Mudryk Karen, Thürmer Stephan, Stemer Dominik, Credidio Bruno, Trinter Florian, Winter Bernd, Slavíček Petr
Department of Physical Chemistry, University of Chemistry and Technology, Technická 5, 16628 Prague, Czech Republic.
Molecular Physics, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.
Phys Chem Chem Phys. 2024 Jul 24;26(29):19673-19684. doi: 10.1039/d4cp01521e.
Liquid-jet photoemission spectroscopy (LJ-PES) directly probes the electronic structure of solutes and solvents. It also emerges as a novel tool to explore chemical structure in aqueous solutions, yet the scope of the approach has to be examined. Here, we present a pH-dependent liquid-jet photoelectron spectroscopic investigation of ascorbic acid (vitamin C). We combine core-level photoelectron spectroscopy and calculations, allowing us to site-specifically explore the acid-base chemistry of the biomolecule. For the first time, we demonstrate the capability of the method to simultaneously assign two deprotonation sites within the molecule. We show that a large change in chemical shift appears even for atoms distant several bonds from the chemically modified group. Furthermore, we present a highly efficient and accurate computational protocol based on a single structure using the maximum-overlap method for modeling core-level photoelectron spectra in aqueous environments. This work poses a broader question: to what extent can LJ-PES complement established structural techniques such as nuclear magnetic resonance? Answering this question is highly relevant in view of the large number of incorrect molecular structures published.
液体喷射光发射光谱法(LJ-PES)可直接探测溶质和溶剂的电子结构。它也作为一种探索水溶液中化学结构的新型工具而出现,然而该方法的适用范围仍有待研究。在此,我们展示了一项关于抗坏血酸(维生素C)的pH依赖型液体喷射光电子能谱研究。我们将芯能级光电子能谱与计算相结合,从而能够对生物分子的酸碱化学进行位点特异性研究。我们首次证明了该方法能够同时确定分子内的两个去质子化位点。我们表明,即使对于与化学修饰基团相隔几个键的原子,化学位移也会出现很大变化。此外,我们基于单一结构提出了一种高效且准确的计算方案,该方案使用最大重叠方法来模拟水环境中的芯能级光电子能谱。这项工作提出了一个更广泛的问题:LJ-PES在多大程度上可以补充诸如核磁共振等已有的结构技术?鉴于已发表的大量错误分子结构,回答这个问题具有高度相关性。