In this work, several routes are described towards obtaining pure inorganic phases derived from Coralline officinallis red algae. The scanning electron microscopy studies have shown that it becomes possible not only to eliminate the undesired organic phase, but also to preserve or tailor the red algae typical microporosity. X-ray diffraction analysis was used to investigate the phase content of the red algae before and after performing the different treatment routes. Hydroxyapatite nanocrystallites were obtained after converting the coralline calcium carbonate skeleton by means of combining thermal and chemical routes. These results were confirmed by Fourier transform infra-red spectroscopic analysis. The processing routes herein descr...
Biphasic Calcium Phosphate bioceramics belong to a group of bone substitute biomaterials comprised o...
Porous three-dimensional hydroxyapatite scaffolds were synthesised from aragonitic cuttlefish bones ...
© 2017, Australian Ceramic Society. The marine species are especially suited for the production of b...
This book presents the latest advances in marine structures and related biomaterials for application...
[Excerpt] Calcium phosphates (CaP) such as hydroxyapatite (HA) and tricalcium phosphate are widely u...
Marine structure, coralline materials were converted to calcium phosphate using two different phosp...
Calcium phosphate materials can be produced using a number of wet methods that are based on hydrothe...
© 2014, Australasian Ceramic Society. All rights reserved. Biogenic materials like corals, which are...
Tujuan kajian ini adalah untuk mensintesis hidroksiapatit, Ca1o(P04)s(OH)2 daripada batu karang Mal...
© 2015, The Australian Ceramic Society. Calcium phosphate materials can be easily produced by a numb...
These days, hydroxyapatite as a biomaterial implant is immensely needed. The high rate of accidents,...
This chapter aims to establish the key factors for technological optimization of biogenic calcium ph...
Calcium phosphate materials can be easily produced by a number of wet chemical methods that involve ...
© 2017 Trans Tech Publications, Switzerland. Calcium phosphate materials can be produced using a num...
The aim of this study is to obtain pure natural hydroxyapatite (HAp) and tricalcium phosphate (TCP) ...
Biphasic Calcium Phosphate bioceramics belong to a group of bone substitute biomaterials comprised o...
Porous three-dimensional hydroxyapatite scaffolds were synthesised from aragonitic cuttlefish bones ...
© 2017, Australian Ceramic Society. The marine species are especially suited for the production of b...
This book presents the latest advances in marine structures and related biomaterials for application...
[Excerpt] Calcium phosphates (CaP) such as hydroxyapatite (HA) and tricalcium phosphate are widely u...
Marine structure, coralline materials were converted to calcium phosphate using two different phosp...
Calcium phosphate materials can be produced using a number of wet methods that are based on hydrothe...
© 2014, Australasian Ceramic Society. All rights reserved. Biogenic materials like corals, which are...
Tujuan kajian ini adalah untuk mensintesis hidroksiapatit, Ca1o(P04)s(OH)2 daripada batu karang Mal...
© 2015, The Australian Ceramic Society. Calcium phosphate materials can be easily produced by a numb...
These days, hydroxyapatite as a biomaterial implant is immensely needed. The high rate of accidents,...
This chapter aims to establish the key factors for technological optimization of biogenic calcium ph...
Calcium phosphate materials can be easily produced by a number of wet chemical methods that involve ...
© 2017 Trans Tech Publications, Switzerland. Calcium phosphate materials can be produced using a num...
The aim of this study is to obtain pure natural hydroxyapatite (HAp) and tricalcium phosphate (TCP) ...
Biphasic Calcium Phosphate bioceramics belong to a group of bone substitute biomaterials comprised o...
Porous three-dimensional hydroxyapatite scaffolds were synthesised from aragonitic cuttlefish bones ...
© 2017, Australian Ceramic Society. The marine species are especially suited for the production of b...