4.2 Article

First Principles Calculations of NMR Chemical Shifts of Liquid Water at an Amorphous Silica Interface

Publisher

WALTER DE GRUYTER GMBH
DOI: 10.1524/zpch.2012.0290

Keywords

Car-Parrinello Molecular Dynamics Simulations; DFT; NMR Chemical Shift Calculations; MCM-41; Liquid Water Structure; Confinement

Funding

  1. German Research Foundation (DFG) [SE 1008/5, 1008/8]
  2. Northern German Supercomputing Alliance (HLRN) [HLRN/bec00073]

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We investigate the anomalous structure and hydrogen bond network of water molecules confined inside a silica nanopore (MCM-41 type). In addition to geometric data, we use proton NMR chemical shifts as a measure for the strength of the H-bonding network. We compute the H-1 NMR shifts of confined water based on a first principle approach in the framework of density functional perturbation theory under periodic boundary conditions. The hydrophilic character of the silica is well manifested in the water density profile. Our calculations illustrate both the modifications of the H-1 NMR chemical shifts of the water with respect to bulk water and a considerable slowing down of water diffusion. In the vicinity of silanols, weakly hydrogen bonded liquid water is observed, while at the center region of the pore, the hydrogen bonding network is enhanced with respect to bulk water.

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