Institute Methods and Instrumentation for Synchrotron Radiation Research, Helmholtz Center Berlin for Materials and Energy, 12489 Berlin, Germany.
Institute of Physics and Astronomy, University of Potsdam, 14476 Potsdam, Germany.
Proc Natl Acad Sci U S A. 2022 Jul 12;119(28):e2118101119. doi: 10.1073/pnas.2118101119. Epub 2022 Jul 5.
The fluctuating hydrogen bridge bonded network of liquid water at ambient conditions entails a varied ensemble of the underlying constituting HO molecular moieties. This is mirrored in a manifold of the HO molecular potentials. Subnatural line width resonant inelastic X-ray scattering allowed us to quantify the manifold of molecular potential energy surfaces along the HO symmetric normal mode and the local asymmetric O-H bond coordinate up to 1 and 1.5 Å, respectively. The comparison of the single HO molecular potentials and spectroscopic signatures with the ambient conditions liquid phase HO molecular potentials is done on various levels. In the gas phase, first principles, Morse potentials, and stepwise harmonic potential reconstruction have been employed and benchmarked. In the liquid phase the determination of the potential energy manifold along the local asymmetric O-H bond coordinate from resonant inelastic X-ray scattering via the bound state oxygen 1 to [Formula: see text] resonance is treated within these frameworks. The potential energy surface manifold along the symmetric stretch from resonant inelastic X-ray scattering via the oxygen 1 to [Formula: see text] resonance is based on stepwise harmonic reconstruction. We find in liquid water at ambient conditions HO molecular potentials ranging from the weak interaction limit to strongly distorted potentials which are put into perspective to established parameters, i.e., intermolecular O-H, H-H, and O-O correlation lengths from neutron scattering.
在环境条件下,液态水中氢桥键合网络的波动导致了构成 HO 分子部分的基础集合的变化。这反映在 HO 分子势能的多种形式中。亚自然线宽共振非弹性 X 射线散射使我们能够沿着 HO 对称正则模式和局部不对称 O-H 键坐标分别定量地确定分子势能面的多种形式,直到 1 和 1.5 Å。HO 单分子势能和光谱特征与环境条件下液相 HO 分子势能的比较是在不同的水平上进行的。在气相中,我们采用了第一性原理、莫尔斯势和逐步谐波势重建,并进行了基准测试。在液相中,通过共振非弹性 X 射线散射从束缚态氧 1 到 [Formula: see text] 共振来确定局部不对称 O-H 键坐标上的势能面多种形式,是在这些框架内进行处理的。通过氧 1 到 [Formula: see text] 共振的共振非弹性 X 射线散射,沿对称拉伸的势能面多种形式是基于逐步谐波重建的。我们发现,在环境条件下的液态水中,HO 分子势能从弱相互作用极限到强烈扭曲的势能都有,这些势能与已建立的参数,即来自中子散射的分子间 O-H、H-H 和 O-O 相关长度相关。