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A Systematic Examination of the Morphogenesis of Calcium Carbonate in the Presence of a Double-Hydrophilic Block Copolymer

Chemistry - A European Journal · 2001 · Vol. 7(1) · pp. 106–116
Helmut CölfenLimin Qi

Abstract

In this paper, a systematic study of the influence of various experimental parameters on the morphology and size of CaCO3 crystals after room-temperature crystallization from water in the presence of poly(ethylene glycol)-block-poly(methacrylic acid) (PEG-b-PMAA) is presented. The pH of the solution, the block copolymer concentration, and the ratio [polymer]/[CaCO3] turned out to be important parameters for the morphogenesis of CaCO3, whereas a moderate increase of the ionic strength (0.016 M) had no influence. Depending on the experimental conditions, the crystal morphologies can be tuned from calcite rhombohedra via rods, ellipsoids or dumbbells to spheres. A morphology map is presented which allows the prediction of the crystal morphology from a combination of pH, and CaCO3 and polymer concentration. Morphologies reported in literature for the same system but under different crystallization conditions agree well with the predictions from the morphology map. A closer examination of the growth of polycrystalline macroscopic CaCO3 spheres by TEM and time-resolved dynamic light scattering showed that CaCO3 macrocrystals are formed from strings of aggregated amorphous nanoparticles and then recrystallize as dumbbell-shaped or spherical calcite macrocrystal.

Calcium Carbonate Crystallization and InhibitionCephalopods and Marine BiologyBuilding materials and conservationMaterials scienceCrystallizationCalciteCopolymerPolymerMorphology (biology)Chemical engineeringCalcium carbonateCrystalliteCrystal (programming language)

MeSH terms

Calcium CarbonateCrystallizationHydrogen-Ion ConcentrationMicroscopy, ElectronMicroscopy, Electron, ScanningOsmolar ConcentrationPolyethylene GlycolsPolymersPolymethacrylic AcidsTime FactorsSpectroscopy, Fourier Transform Infrared

Funding

  • Deutsche Forschungsgemeinschaft
  • Max-Planck-Gesellschaft
Citations
472
FWCI
27.45
field-weighted impact
References
68
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100%
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References
Calcium carbonate films and helices grown in solutions of poly(aspartate)
Journal of Crystal Growth · 1998 · 326 citations
Design strategies in mineralized biological materials
Journal of Materials Chemistry · 1997 · 1,027 citations
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