Halochromic modulation of amorphous calcium carbonate crystallization driven by pH-responsive bioinspired pigments
Abstract
Abstract Colors in biominerals often arise from the occlusion of low-molecular-weight organic pigments within calcium carbonate (CaCO 3 ) mineral phases during biomineralization processes; however, the physicochemical origin of these colors has been overlooked. Here, inspired by the growth of colored sea urchin spines that occurs through amorphous CaCO 3 (ACC) precursors, we show an in-vitro halochromic modulation of ACC crystallization. In this mechanism, the deprotonation of a natural red pigment naphthazarin (NZ) is driven by pH variations during mineral formation and subsequently stabilized within CaCO 3 - hybrid pigments. The latter show lavender-blue to violet-blue hues upon crystallization. Deprotonated NZ has a minimal impact on ACC formation and crystallization, which occurs through local dissolution and reprecipitation mechanisms; however, it limits the formation of vaterite, and calcite distorted nanodomains. Deprotonated NZ nano-inclusions that interact with calcite through water are thus formed. Overall, this study brings insights into the processes behind the coloration of biomineralized organisms.
Article Details
Authors (18)
Vaskar Sardhalia
Claudio Dos Reis Ferreira
Guillaume P. Laurent
Sorbonne Université, CNRS
Mohamed Selmane
Anne Vallée
Mathieu Frégnaux
Xiaoyan Li
Marta de Frutos
Andrew Fitch
European Synchrotron Radiation Facility
Clemens N. Z. Schmitt
Shahrouz Amini
Zhaoyong Zou
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing
Iryna Polishchuk
Boaz Pokroy
Department of Materials Science and Engineering, Technion - Israel Institute of Technology
Peter Fratzl
Thierry Azaïs
Sorbonne Université, CNRS
Nadine Nassif
Marie Albéric