Stevens Joanna S, Coultas Sarah, Jaye Cherno, Fischer Daniel A, Schroeder Sven L M
School of Chemical Engineering and Analytical Science, The University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Phys Chem Chem Phys. 2020 Mar 7;22(9):4916-4923. doi: 10.1039/c9cp05677g. Epub 2020 Feb 19.
Short, strong hydrogen bonds (SSHBs) have been a source of interest and considerable speculation over recent years, culminating with those where hydrogen resides around the midpoint between the donor and acceptor atoms, leading to quasi-covalent nature. We demonstrate that X-ray photoelectron spectroscopy (XPS) and near-edge X-ray absorption fine structure (NEXAFS) spectroscopy provide deep insight into the electronic structure of the short OHN hydrogen bond of 3,5-pyridinedicarboxylic acid, revealing for the first time distinctive spectroscopic identifiers for these quasi-symmetrical hydrogen bonds. An intermediate nitrogen (core level) chemical shift occurs for the almost centrally located hydrogen compared to protonated (ionic) and non-ionic analogues, and it reveals the absence of two-site disorder. This type of bonding is also evident through broadening of the nitrogen 1s photoemission and 1s → 1π* peaks in XPS and NEXAFS, respectively, arising from the femtosecond lifetimes of hydrogen in the potential wells slightly offset to either side of the centre. The line-shape of the core level excitations are thus related to the population occupancies, reflecting the temperature-dependent shape of the hydrogen potential energy well. Both XPS and NEXAFS provide a distinctive identifier for these quasi-symmetrical hydrogen bonds, paving the way for detailed studies into their prevalence and potentially unique physical and chemical properties.
近年来,短而强的氢键(SSHBs)一直是人们感兴趣并引发大量猜测的来源,最终聚焦于氢位于供体和受体原子之间中点附近的氢键,这导致了其具有准共价性质。我们证明,X射线光电子能谱(XPS)和近边X射线吸收精细结构(NEXAFS)光谱能深入洞察3,5-吡啶二甲酸短OHN氢键的电子结构,首次揭示了这些准对称氢键独特的光谱标识符。与质子化(离子型)和非离子型类似物相比,几乎位于中心位置的氢会出现中间氮(芯能级)化学位移,这表明不存在双位点无序。这种键合类型在XPS和NEXAFS中也很明显,分别表现为氮1s光电子发射峰和1s→1π*峰的展宽,这是由于氢在略微偏离中心两侧的势阱中的飞秒寿命所致。因此,芯能级激发的线形与占据情况相关,反映了氢势能阱的温度依赖性形状。XPS和NEXAFS都为这些准对称氢键提供了独特的标识符,为详细研究它们的普遍性以及潜在的独特物理和化学性质铺平了道路。