Biogenic nucleation and crystallization occur in confined spaces with defined interfacial properties. However, the regulatory functions of organic players in the stabilization and transport of inorganic precursors such as ion clusters, liquid‐condensed phases, and amorphous particles are unclear. Given the prevalence of unstructured proteins in biogenic materials, the present study investigates the effects of biomineral‐associated, intrinsically disordered protein domains with simple and repetitive amino acid compositions on mineral nucleation and their capability to form distinct supramolecular assemblies. The quantitative assessment and structural evaluation of the nucleation process reveal that disordered regions confine hydrated mineral...
International audienceBiological materials typically display complex morphologies and hierarchical a...
Biological materials typically display complex morphologies and hierarchical architectures, properti...
A major goal in materials science is to develop bioinspired functional materials based on the precis...
Biogenic nucleation and crystallization occur in confined spaces with defined interfacial properties...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
The formation of inorganic phases by living organisms, biomineralization, is an important and widesp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
In living systems, the biologically programmed interplay of organic and inorganic constituents often...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Protein-rich liquid clusters exist in solutions of numerous proteins. They play the role of nucleat...
Nature produces hierarchical, functional materials by shaping amorphous mineral precursors under phy...
International audienceBiological materials typically display complex morphologies and hierarchical a...
Biological materials typically display complex morphologies and hierarchical architectures, properti...
International audienceBiological materials typically display complex morphologies and hierarchical a...
Biological materials typically display complex morphologies and hierarchical architectures, properti...
A major goal in materials science is to develop bioinspired functional materials based on the precis...
Biogenic nucleation and crystallization occur in confined spaces with defined interfacial properties...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
The formation of inorganic phases by living organisms, biomineralization, is an important and widesp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
In living systems, the biologically programmed interplay of organic and inorganic constituents often...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Protein-rich liquid clusters exist in solutions of numerous proteins. They play the role of nucleat...
Nature produces hierarchical, functional materials by shaping amorphous mineral precursors under phy...
International audienceBiological materials typically display complex morphologies and hierarchical a...
Biological materials typically display complex morphologies and hierarchical architectures, properti...
International audienceBiological materials typically display complex morphologies and hierarchical a...
Biological materials typically display complex morphologies and hierarchical architectures, properti...
A major goal in materials science is to develop bioinspired functional materials based on the precis...