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Updated: Feb 28, 2026

Synthesis and Characterization of Supramolecular Colloids
Published on: April 22, 2016
A general strategy for colloidal stable ultrasmall amorphous mineral clusters in organic solvents
Shengtong Sun1, Denis Gebauer1, Helmut Cölfen1
1Department of Chemistry , Physical Chemistry , University of Konstanz , Universitätsstrasse 10 , Box 714 , D-78457 Konstanz , Germany .
Abstract:
While nature exerts precise control over the size and chemical composition of minerals, this is still a challenging task for artificial syntheses. Despite its significance, until now, there are still no reports on colloidal mineral nanoparticles in the subnanometer range. Here we developed a general gas diffusion strategy using 10,12-pentacosadiynoic acid as a ligand and ethanol as a solvent to fabricate stable amorphous mineral clusters with a core size of less than 2 nm. First discovered for CaCO3, the method was successfully extended to produce monolayer protected clusters of MgCO3, SrCO3, Eu2(CO3)3, Tb2(CO3)3, Ce2(CO3)3, Ca (PO4) , CaC2O4 and their hybrid minerals, Ca Mg (CO3) and Ca (CO3) (PO4) . All the mineral clusters can be well dispersed in organic solvents like toluene, and are stable for a long period without further crystallization. Our work paves a way for the artificial synthesis of colloidal mineral clusters, which may have various uses in both fundamental research and industry.
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