Momentum-dependent sum-frequency vibrational spectroscopy of bonded interface layer at charged water interfaces

Author:

Hsiao Yao1ORCID,Chou Ting-Han1ORCID,Patra Animesh1ORCID,Wen Yu-Chieh1ORCID

Affiliation:

1. Institute of Physics, Academia Sinica, Taipei 11529, Taiwan, R. O. C.

Abstract

Interface-specific hydrogen (H)–bonding network of water directly controls the energy transfer and chemical reaction pathway at many charged aqueous interfaces, yet to characterize these bonded water layer structures remains a challenge. We now develop a sum-frequency spectroscopic scheme with varying photon momenta as an all-optic solution for retrieving the vibrational spectra of the bonded water layer and the ion diffuse layer and, hence, microscopic structural and charging information about an interface. Application of the method to a model surfactant-water interface reveals a hidden weakly donor H-bonded water species, suggesting an asymmetric hydration-shell structure of fully solvated surfactant headgroups. In another application to a zwitterionic phosphatidylcholine lipid monolayer–water interface, we find a highly polarized bonded water layer structure associating to the phosphatidylcholine headgroup, while the diffuse layer contribution is experimentally proven to be negligible. Our all-optic method offers an in situ microscopic probe of electrochemical and biological interfaces and the route toward future imaging and ultrafast dynamics studies.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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