Most of our knowledge of dislocation-mediated stress relaxation during epitaxial crystal growth comes from the study of inorganic heterostructures. Here we use Bragg coherent diffraction imaging to investigate a contrasting system, the epitaxial growth of calcite (CaCO3) crystals on organic self-assembled monolayers, where these are widely used as a model for biomineralization processes. The calcite crystals are imaged to simultaneously visualize the crystal morphology and internal strain fields. Our data reveal that each crystal possesses a single dislocation loop that occupies a common position in every crystal. The loops exhibit entirely different geometries to misfit dislocations generated in conventional epitaxial thin films and are su...
Manipulation of inorganic materials with organic macromolecules enables organisms to create biominer...
Growing nanostructures in confinement allows for the control of their shape, size and structure, as ...
Calcite (the most stable form of CaCO3) is a common mineral that naturally exists in geology and bio...
Most of our knowledge of dislocation-mediated stress relaxation during epitaxial crystal growth come...
Most of our knowledge of dislocation mediated stress relaxation during epitaxial crystal growth come...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
Epitaxial growth of calcite on dolomite and kutnahorite (104) surfaces has been promoted at room tem...
In crystal growth of mineral species or different compositional members of a solid solution on one a...
Epitaxial growth of calcite on dolomite and kutnahorite (104) surfaces has been promoted at room tem...
Atomic-level defects such as dislocations play key roles in determining the macroscopic properties o...
We recently discovered a unique biostrategy for strengthening and toughening brittle crystals of cal...
Contains fulltext : 181998.pdf (publisher's version ) (Closed access)The lateral a...
E-twinning is a common plastic deformation mechanism in calcite deformed at low temperature. Strain ...
This paper presents simulations of calcium carbonate ordering in contact with self-assembled monolay...
Manipulation of inorganic materials with organic macromolecules enables organisms to create biominer...
Growing nanostructures in confinement allows for the control of their shape, size and structure, as ...
Calcite (the most stable form of CaCO3) is a common mineral that naturally exists in geology and bio...
Most of our knowledge of dislocation-mediated stress relaxation during epitaxial crystal growth come...
Most of our knowledge of dislocation mediated stress relaxation during epitaxial crystal growth come...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
Epitaxial growth of calcite on dolomite and kutnahorite (104) surfaces has been promoted at room tem...
In crystal growth of mineral species or different compositional members of a solid solution on one a...
Epitaxial growth of calcite on dolomite and kutnahorite (104) surfaces has been promoted at room tem...
Atomic-level defects such as dislocations play key roles in determining the macroscopic properties o...
We recently discovered a unique biostrategy for strengthening and toughening brittle crystals of cal...
Contains fulltext : 181998.pdf (publisher's version ) (Closed access)The lateral a...
E-twinning is a common plastic deformation mechanism in calcite deformed at low temperature. Strain ...
This paper presents simulations of calcium carbonate ordering in contact with self-assembled monolay...
Manipulation of inorganic materials with organic macromolecules enables organisms to create biominer...
Growing nanostructures in confinement allows for the control of their shape, size and structure, as ...
Calcite (the most stable form of CaCO3) is a common mineral that naturally exists in geology and bio...