Publication | Open Access
Real-Time Observation of CaCO<sub>3</sub> Mineralization in Highly Supersaturated Graphene Liquid Cells
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Citations
24
References
2020
Year
EngineeringChemistryMineralization DynamicsCarbon-based MaterialReal-time ObservationCalcium CarbonateMineral-fluid InteractionCalcium AluminateCrystal FormationBiophysicsMaterials ScienceStable CalciteNanotechnologyCrystallographyGraphene Quantum DotNanomaterialsBiomineralizationGrapheneGeochemistryAuthigenic Mineral Formation
The mineralization dynamics of calcium carbonate is investigated under highly supersaturated conditions using graphene liquid cell transmission electron microscopy. We demonstrate that the mineralization process has three steps: nucleation, diffusion-limited growth, and Ostwald ripening/coalescence. In addition, we show that the polymorphs precipitate in a specific order, from metastable aragonite to stable calcite, thus proving Ostwald's rule of stages. In highly supersaturated solutions, the aragonite phase crystallizes in a stable manner, in addition to the calcite phase.
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