Chiral Water Structures on the Dolomite(104)-S Surface Enantiomer

Abstract The particular distribution of dolomite over geological time scales and the challenges of growing dolomite under geological conditions in a laboratory setting are still some of the most intriguing scientific puzzles. So-called organogenic models that suggest the role of molecules, especially of extracellular polymeric substances in the liquid phase, in dolomite formation currently challenge the attempts to understand dolomite formation in the context of kinetic constraints. Here, we confirm the presence of chirality on dolomite(104) surfaces by atomic-scale imaging with noncontact atomic force microscopy. Two enantiomers are mapped at the two opposing crystal surfaces. Chiral signatures are further identified in the adsorption of single water molecules, and chirality transfer to a full water monolayer is imaged. Links between chiral specificity of dolomite growth and chiral selectivity of biomolecules on earth, mediated by the liquid phase, appear to be a so far overlooked jigsaw piece in understanding the formation processes of dolomite.

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Publication Details

Journal
Nano Letters
Published
2026-09-09
DOI
https://doi.org/10.1021/acs.nanolett.6c03227
Primary Topic
Origins and Evolution of Life
Type
article
Field-Weighted Citation Impact
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article

Chiral Water Structures on the Dolomite(104)-S Surface Enantiomer

Adam S. Foster, Jonas Heggemann, Jie Huang, Philipp Rahe et al.
Nano Letters
Origins and Evolution of Life
article

Chiral Water Structures on the Dolomite(104)-S Surface Enantiomer

Adam S. Foster, Jonas Heggemann, Jie Huang, Philipp Rahe, Paul Laubrock
article en

Abstract

Abstract The particular distribution of dolomite over geological time scales and the challenges of growing dolomite under geological conditions in a laboratory setting are still some of the most intriguing scientific puzzles. So-called organogenic models that suggest the role of molecules, especially of extracellular polymeric substances in the liquid phase, in dolomite formation currently challenge the attempts to understand dolomite formation in the context of kinetic constraints. Here, we confirm the presence of chirality on dolomite(104) surfaces by atomic-scale imaging with noncontact atomic force microscopy. Two enantiomers are mapped at the two opposing crystal surfaces. Chiral signatures are further identified in the adsorption of single water molecules, and chirality transfer to a full water monolayer is imaged. Links between chiral specificity of dolomite growth and chiral selectivity of biomolecules on earth, mediated by the liquid phase, appear to be a so far overlooked jigsaw piece in understanding the formation processes of dolomite.

Nano Letters
Kanazawa University (JP), Osnabrück University (DE), Aalto University (FI)
Openalex Percentile: Top 10%
Origins and Evolution of Life
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Chiral Water Structures on the Dolomite(104)-S Surface Enantiomer — Adam S. Foster, Jonas Heggemann, et al. · Nano Letters (2026) | TGRS Research Map | TGRS