Cargando…

Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion

This study aims to investigate the electric responses (complex modulus and complex impedance analysis) of hydroxyapatite/starch bone scaffold as a function of hydroxyapatite/starch proportion and the microstructural features. Hence, the non-porous and porous hydroxyapatite/starch composites were fab...

Descripción completa

Detalles Bibliográficos
Autores principales: Beh, Chong You, Cheng, Ee Meng, Tan, Xiao Jian, Mohd Nasir, Nashrul Fazli, Abdul Majid, Mohd Shukry, Mohd Jamir, Mohd Ridzuan, Khor, Shing Fhan, Lee, Kim Yee, Mohamad, Che Wan Sharifah Robiah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866754/
https://www.ncbi.nlm.nih.gov/pubmed/36679201
http://dx.doi.org/10.3390/polym15020320
_version_ 1784876170462887936
author Beh, Chong You
Cheng, Ee Meng
Tan, Xiao Jian
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Mohd Jamir, Mohd Ridzuan
Khor, Shing Fhan
Lee, Kim Yee
Mohamad, Che Wan Sharifah Robiah
author_facet Beh, Chong You
Cheng, Ee Meng
Tan, Xiao Jian
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Mohd Jamir, Mohd Ridzuan
Khor, Shing Fhan
Lee, Kim Yee
Mohamad, Che Wan Sharifah Robiah
author_sort Beh, Chong You
collection PubMed
description This study aims to investigate the electric responses (complex modulus and complex impedance analysis) of hydroxyapatite/starch bone scaffold as a function of hydroxyapatite/starch proportion and the microstructural features. Hence, the non-porous and porous hydroxyapatite/starch composites were fabricated with various hydroxyapatite/starch proportions (70/30, 60/40, 50/50, 40/60, 30/70, 20/80, and 10/90 wt/wt%). Microstructural analysis of the porous hydroxyapatite/starch composites was carried out by using scanning electron microscopy. It shows that the formation of hierarchical porous microstructures with high porosity is more significant at a high starch proportion. The complex modulus and complex impedance analysis were conducted to investigate the electrical conduction mechanism of the hydroxyapatite/starch composites via dielectric spectroscopy within a frequency range from 5 MHz to 12 GHz. The electrical responses of the hydroxyapatite/starch composites are highly dependent on the frequency, material proportion, and microstructures. High starch proportion and highly porous hierarchical microstructures enhance the electrical responses of the hydroxyapatite/starch composite. The material proportion and microstructure features of the hydroxyapatite/starch composites can be indirectly reflected by the simulated electrical parameters of the equivalent electrical circuit models.
format Online
Article
Text
id pubmed-9866754
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98667542023-01-22 Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion Beh, Chong You Cheng, Ee Meng Tan, Xiao Jian Mohd Nasir, Nashrul Fazli Abdul Majid, Mohd Shukry Mohd Jamir, Mohd Ridzuan Khor, Shing Fhan Lee, Kim Yee Mohamad, Che Wan Sharifah Robiah Polymers (Basel) Article This study aims to investigate the electric responses (complex modulus and complex impedance analysis) of hydroxyapatite/starch bone scaffold as a function of hydroxyapatite/starch proportion and the microstructural features. Hence, the non-porous and porous hydroxyapatite/starch composites were fabricated with various hydroxyapatite/starch proportions (70/30, 60/40, 50/50, 40/60, 30/70, 20/80, and 10/90 wt/wt%). Microstructural analysis of the porous hydroxyapatite/starch composites was carried out by using scanning electron microscopy. It shows that the formation of hierarchical porous microstructures with high porosity is more significant at a high starch proportion. The complex modulus and complex impedance analysis were conducted to investigate the electrical conduction mechanism of the hydroxyapatite/starch composites via dielectric spectroscopy within a frequency range from 5 MHz to 12 GHz. The electrical responses of the hydroxyapatite/starch composites are highly dependent on the frequency, material proportion, and microstructures. High starch proportion and highly porous hierarchical microstructures enhance the electrical responses of the hydroxyapatite/starch composite. The material proportion and microstructure features of the hydroxyapatite/starch composites can be indirectly reflected by the simulated electrical parameters of the equivalent electrical circuit models. MDPI 2023-01-08 /pmc/articles/PMC9866754/ /pubmed/36679201 http://dx.doi.org/10.3390/polym15020320 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Beh, Chong You
Cheng, Ee Meng
Tan, Xiao Jian
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Mohd Jamir, Mohd Ridzuan
Khor, Shing Fhan
Lee, Kim Yee
Mohamad, Che Wan Sharifah Robiah
Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title_full Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title_fullStr Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title_full_unstemmed Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title_short Complex Impedance and Modulus Analysis on Porous and Non-Porous Scaffold Composites Due to Effect of Hydroxyapatite/Starch Proportion
title_sort complex impedance and modulus analysis on porous and non-porous scaffold composites due to effect of hydroxyapatite/starch proportion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866754/
https://www.ncbi.nlm.nih.gov/pubmed/36679201
http://dx.doi.org/10.3390/polym15020320
work_keys_str_mv AT behchongyou compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT chengeemeng compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT tanxiaojian compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT mohdnasirnashrulfazli compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT abdulmajidmohdshukry compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT mohdjamirmohdridzuan compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT khorshingfhan compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT leekimyee compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion
AT mohamadchewansharifahrobiah compleximpedanceandmodulusanalysisonporousandnonporousscaffoldcompositesduetoeffectofhydroxyapatitestarchproportion