In this study, the influence of Mg2+ on the aggregation and morphology of precipitated aragonite crystals is investigated at different temperatures. Different from some investigations described in the literature, aragonite precipitates in chemical systems in which Mg2+ acts specifically as crystal habit modifiers and not as polymorphic selectors. The results show that at increased Mg2+ concentration and temperature the aragonite crystals are less aggregated and that the amount of crystals sharing {110} faces and having larger extension of {001} faces increases. These outcomes may be relevant in biological, geochemical and technological contexts
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
In this study, the influence of Mg2+ on the aggregation and morphology of precipitated aragonite cr...
In this study, the influence of Mg2+ on the aggregation and morphology of precipitated aragonite cr...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
[1] Experimental transformation of a rather pure natural calcite marble to aragonite marble did not ...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
In this study, the influence of Mg2+ on the aggregation and morphology of precipitated aragonite cr...
In this study, the influence of Mg2+ on the aggregation and morphology of precipitated aragonite cr...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
The effect of Mg^ ions on the polymorphic crystallization of calcium carbonate has been studied by p...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
International audienceThe incorporation of Mg in aragonite was experimentally investigated as a func...
[1] Experimental transformation of a rather pure natural calcite marble to aragonite marble did not ...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...
Aragonite is thermodynamically metastable at near-surface conditions, and still it is relatively wid...