The solid-liquid interface plays a key role in a large range of fields, including geochemistry and environmental science. The detailed knowledge of the surface composition and the local solvent structure is decisive for understanding and predicting interfacial processes. It is well-known that the presence of a surface induces an ordered arrangement of the interfacial solvent molecules. Only very recently, atomic force microscopy (AFM) instrumentation has been further advanced to provide three-dimensional (3D), molecular-level information of the local ordering of the solvent molecules at the solid-liquid interface in direct space. In this thesis, the successful implementation of a state-of-the art 3D mapping routine that combines the easy-to...
Söngen H, Schlegel SJ, Morais Jaques Y, et al. Water Orientation at the Calcite-Water Interface. The...
Söngen H, Marutschke C, Spijker P, et al. Chemical Identification at the Solid-Liquid Interface. Lan...
Rode S, Oyabu N, Kobayashi K, Yamada H, Kühnle A. True Atomic-Resolution Imaging of (1014) Calcite i...
Calcite and magnesite are important mineral constituents of the earth's crust. In aqueous environmen...
Organic molecules at mineral-water interfaces are known to alter the morphology and composition of t...
Marutschke C, Walters D, Cleveland J, Hermes I, Bechstein R, Kühnle A. Three-dimensional hydration l...
John S. Ions and the calcite-water (10.4) interface - investigated with three-dimensional atomic for...
Diese Arbeit stellt eine ausführliche Studie fundamentaler Eigenschaften der Kalzit CaCO3(10.4) und ...
© 2019 American Chemical Society. Advances in atomic force microscopy (AFM) in water have enabled th...
Here we present both subnanometer imaging of three-dimensional (3D) hydration structures using atomi...
It seems natural to assume that defects at mineral surfaces critically influence interfacial process...
The reactivity of calcite, one of the most abundant minerals in the earth’s crust, is determined by ...
Funding Information: Financial support from the German Research Foundation through grant KU1980/14-1...
Schreiber M, Eckardt M, Klassen S, et al. How deprotonation changes molecular self-assembly - an AFM...
The solid-liquid interface represents systems of great and diverse technological importance. The int...
Söngen H, Schlegel SJ, Morais Jaques Y, et al. Water Orientation at the Calcite-Water Interface. The...
Söngen H, Marutschke C, Spijker P, et al. Chemical Identification at the Solid-Liquid Interface. Lan...
Rode S, Oyabu N, Kobayashi K, Yamada H, Kühnle A. True Atomic-Resolution Imaging of (1014) Calcite i...
Calcite and magnesite are important mineral constituents of the earth's crust. In aqueous environmen...
Organic molecules at mineral-water interfaces are known to alter the morphology and composition of t...
Marutschke C, Walters D, Cleveland J, Hermes I, Bechstein R, Kühnle A. Three-dimensional hydration l...
John S. Ions and the calcite-water (10.4) interface - investigated with three-dimensional atomic for...
Diese Arbeit stellt eine ausführliche Studie fundamentaler Eigenschaften der Kalzit CaCO3(10.4) und ...
© 2019 American Chemical Society. Advances in atomic force microscopy (AFM) in water have enabled th...
Here we present both subnanometer imaging of three-dimensional (3D) hydration structures using atomi...
It seems natural to assume that defects at mineral surfaces critically influence interfacial process...
The reactivity of calcite, one of the most abundant minerals in the earth’s crust, is determined by ...
Funding Information: Financial support from the German Research Foundation through grant KU1980/14-1...
Schreiber M, Eckardt M, Klassen S, et al. How deprotonation changes molecular self-assembly - an AFM...
The solid-liquid interface represents systems of great and diverse technological importance. The int...
Söngen H, Schlegel SJ, Morais Jaques Y, et al. Water Orientation at the Calcite-Water Interface. The...
Söngen H, Marutschke C, Spijker P, et al. Chemical Identification at the Solid-Liquid Interface. Lan...
Rode S, Oyabu N, Kobayashi K, Yamada H, Kühnle A. True Atomic-Resolution Imaging of (1014) Calcite i...