In situ X-ray studies of adlayer-induced crystal nucleation at the liquid–liquid interface

A Elsen, S Festersen, B Runge… - Proceedings of the …, 2013 - National Acad Sciences
A Elsen, S Festersen, B Runge, CT Koops, BM Ocko, M Deutsch, OH Seeck, BM Murphy
Proceedings of the National Academy of Sciences, 2013National Acad Sciences
Crystal nucleation and growth at a liquid–liquid interface is studied on the atomic scale by in
situ Å-resolution X-ray scattering methods for the case of liquid Hg and an electrochemical
dilute electrolyte containing Pb2+, F−, and Br− ions. In the regime negative of the Pb
amalgamation potential V, no change is observed from the surface-layered structure of pure
Hg. Upon potential-induced release of Pb2+ from the Hg bulk at, the formation of an
intriguing interface structure is observed, comprising a well-defined 7.6-Å–thick adlayer …
Crystal nucleation and growth at a liquid–liquid interface is studied on the atomic scale by in situ Å-resolution X-ray scattering methods for the case of liquid Hg and an electrochemical dilute electrolyte containing Pb2+, F−, and Br− ions. In the regime negative of the Pb amalgamation potential V, no change is observed from the surface-layered structure of pure Hg. Upon potential-induced release of Pb2+ from the Hg bulk at, the formation of an intriguing interface structure is observed, comprising a well-defined 7.6-Å–thick adlayer, decorated with structurally related 3D crystallites. Both are identified by their diffraction peaks as PbFBr, preferentially aligned with their axis along the interface normal. X-ray reflectivity shows the adlayer to consist of a stack of five ionic layers, forming a single-unit-cell–thick crystalline PbFBr precursor film, which acts as a template for the subsequent quasiepitaxial 3D crystal growth. This growth behavior is assigned to the combined action of electrostatic and short-range chemical interactions.
National Acad Sciences
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