Biomineralization processes are the subject of numerous investigations. This article gives a review of the study on interactions between the charged polypeptides and the mineral surfaces involved in biomineralization, with an additional kinetic approach. The influence of polypeptides on two types of precipitation processes is discussed: the spontaneous precipitation from supersaturated solution and the growth kinetics of calcite seed crystals. In the first case the phenomenon of the formation and stabilization of metastable phases was found while in the second case the influence of the applied polypeptides on the kinetics and mechanisms of calcite crystal growth was investigated. Calcium carbonate polymorphs, calcite and vaterite, were used...
The fascinating shapes and hierarchical designs of biomineralized structures are an inspiration to m...
Many mineralization processes occur in convection-free conditions. Understanding these processes req...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...
Biomineralization processes are the subject of numerous investigations. This article gives a review ...
none4Biomineralization processes are the subject of numerous investigations. This article gives a re...
Abstract. Biomineralization processes are the subject of numerous investigations. This article gives...
Negatively ionisable poly-L-glutamic acid (pGlu) and poly-L-aspartic acid (pAsp), considered as anal...
With their unique ability for substrate recognition and their sequence-specific self-assembly proper...
Negatively ionisable poly-L-glutamic acid (pGlu) and poly-L-aspartic acid (pAsp), considered as anal...
Spontaneous precipitation of CaCO3 polymorphs in the presence of selected amino acids (AA) has been...
Biomineralization processes offer a wide variety of biomineral structures of unique morphological an...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
The fascinating shapes and hierarchical designs of biomineralized structures have long been an inspi...
The biomineralization of calcium carbonate is masterfully directed by organic macromolecules present...
Biomineralisation is a widespread phenomenon, which enables organisms to form highly ordered materia...
The fascinating shapes and hierarchical designs of biomineralized structures are an inspiration to m...
Many mineralization processes occur in convection-free conditions. Understanding these processes req...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...
Biomineralization processes are the subject of numerous investigations. This article gives a review ...
none4Biomineralization processes are the subject of numerous investigations. This article gives a re...
Abstract. Biomineralization processes are the subject of numerous investigations. This article gives...
Negatively ionisable poly-L-glutamic acid (pGlu) and poly-L-aspartic acid (pAsp), considered as anal...
With their unique ability for substrate recognition and their sequence-specific self-assembly proper...
Negatively ionisable poly-L-glutamic acid (pGlu) and poly-L-aspartic acid (pAsp), considered as anal...
Spontaneous precipitation of CaCO3 polymorphs in the presence of selected amino acids (AA) has been...
Biomineralization processes offer a wide variety of biomineral structures of unique morphological an...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
The fascinating shapes and hierarchical designs of biomineralized structures have long been an inspi...
The biomineralization of calcium carbonate is masterfully directed by organic macromolecules present...
Biomineralisation is a widespread phenomenon, which enables organisms to form highly ordered materia...
The fascinating shapes and hierarchical designs of biomineralized structures are an inspiration to m...
Many mineralization processes occur in convection-free conditions. Understanding these processes req...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...