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Titlebook: New Perspectives on Mineral Nucleation and Growth; From Solution Precur Alexander E.S. Van Driessche,Matthias Kellermeier, Book 2017 Spring

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Structural Characteristics and the Occurrence of Polyamorphism in Amorphous Calcium Carbonate, these goals, many recent studies have focused on understanding the structural properties of amorphous calcium carbonate (ACC), a material known to be critical in the formation of biominerals and biomimetic materials. Here, we present what we believe to be the fundamental elements to an informed und
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Ab Initio Modelling of the Structure and Properties of Crystalline Calcium Carbonate,orrespond either to intermediate species that then transform into more stable phases or to the final mineral crystal. Because of their instability and rare occurrence, the structure and properties of such intermediate metastable phases may not always be fully understood from experiment alone. Vateri
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Mineralization Schemes in the Living World: Mesocrystals, physical mechanisms of material formation. For this purpose, the dependence of spatial properties of minerals including composition, structure, and orientation on dynamic processes such as the transport of mineral precursors as well as the nucleation and growth of particles requires elucidation. Th
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Nucleation and Growth from a Biomineralization Perspective,r no classical, two-step, pathway. In addition, in mineralizing organisms, the growth process can also take place through a classical path wherein instead of addition of single ions to the growing crystal nuclei, amorphous nanoparticles that crystallize on the growing crystal nuclei are utilized. Af
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