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Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study

This paper aims to investigate the dielectric properties, i.e., dielectric constant (ε′), dielectric loss factor (ε″), dielectric tangent loss (tan δ), electrical conductivity (σ), and penetration depth (D(p)), of the porous nanohydroxyapatite/starch composites in the function of starch proportion,...

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Autores principales: Beh, Chong You, Cheng, Ee Meng, Mohd Nasir, Nashrul Fazli, Abdul Majid, Mohd Shukry, Khor, Shing Fhan, Mohd Jamir, Mohd Ridzuan, Mohd Tarmizi, Emma Ziezie, Lee, Kim Yee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9146691/
https://www.ncbi.nlm.nih.gov/pubmed/35628505
http://dx.doi.org/10.3390/ijms23105695
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author Beh, Chong You
Cheng, Ee Meng
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Khor, Shing Fhan
Mohd Jamir, Mohd Ridzuan
Mohd Tarmizi, Emma Ziezie
Lee, Kim Yee
author_facet Beh, Chong You
Cheng, Ee Meng
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Khor, Shing Fhan
Mohd Jamir, Mohd Ridzuan
Mohd Tarmizi, Emma Ziezie
Lee, Kim Yee
author_sort Beh, Chong You
collection PubMed
description This paper aims to investigate the dielectric properties, i.e., dielectric constant (ε′), dielectric loss factor (ε″), dielectric tangent loss (tan δ), electrical conductivity (σ), and penetration depth (D(p)), of the porous nanohydroxyapatite/starch composites in the function of starch proportion, pore size, and porosity over a broad band frequency range of 5 MHz–12 GHz. The porous nanohydroxyapatite/starch composites were fabricated using different starch proportions ranging from 30 to 90 wt%. The results reveal that the dielectric properties and the microstructural features of the porous nanohydroxyapatite/starch composites can be enhanced by the increment in the starch proportion. Nevertheless, the composite with 80 wt% of starch proportion exhibit low dielectric properties (ε′, ε″, tan δ, and σ) and a high penetration depth because of its highly interconnected porous microstructures. The dielectric properties of the porous nanohydroxyapatite/starch composites are highly dependent on starch proportion, average pore size, and porosity. The regression models are developed to express the dielectric properties of the porous nanohydroxyapatite/starch composites (R(2) > 0.96) in the function of starch proportion, pore size, and porosity from 1 to 11 GHz. This dielectric study can facilitate the assessment of bone scaffold design in bone tissue engineering applications.
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spelling pubmed-91466912022-05-29 Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study Beh, Chong You Cheng, Ee Meng Mohd Nasir, Nashrul Fazli Abdul Majid, Mohd Shukry Khor, Shing Fhan Mohd Jamir, Mohd Ridzuan Mohd Tarmizi, Emma Ziezie Lee, Kim Yee Int J Mol Sci Article This paper aims to investigate the dielectric properties, i.e., dielectric constant (ε′), dielectric loss factor (ε″), dielectric tangent loss (tan δ), electrical conductivity (σ), and penetration depth (D(p)), of the porous nanohydroxyapatite/starch composites in the function of starch proportion, pore size, and porosity over a broad band frequency range of 5 MHz–12 GHz. The porous nanohydroxyapatite/starch composites were fabricated using different starch proportions ranging from 30 to 90 wt%. The results reveal that the dielectric properties and the microstructural features of the porous nanohydroxyapatite/starch composites can be enhanced by the increment in the starch proportion. Nevertheless, the composite with 80 wt% of starch proportion exhibit low dielectric properties (ε′, ε″, tan δ, and σ) and a high penetration depth because of its highly interconnected porous microstructures. The dielectric properties of the porous nanohydroxyapatite/starch composites are highly dependent on starch proportion, average pore size, and porosity. The regression models are developed to express the dielectric properties of the porous nanohydroxyapatite/starch composites (R(2) > 0.96) in the function of starch proportion, pore size, and porosity from 1 to 11 GHz. This dielectric study can facilitate the assessment of bone scaffold design in bone tissue engineering applications. MDPI 2022-05-19 /pmc/articles/PMC9146691/ /pubmed/35628505 http://dx.doi.org/10.3390/ijms23105695 Text en © 2022 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
Mohd Nasir, Nashrul Fazli
Abdul Majid, Mohd Shukry
Khor, Shing Fhan
Mohd Jamir, Mohd Ridzuan
Mohd Tarmizi, Emma Ziezie
Lee, Kim Yee
Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title_full Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title_fullStr Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title_full_unstemmed Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title_short Regression Analysis of the Dielectric and Morphological Properties for Porous Nanohydroxyapatite/Starch Composites: A Correlative Study
title_sort regression analysis of the dielectric and morphological properties for porous nanohydroxyapatite/starch composites: a correlative study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9146691/
https://www.ncbi.nlm.nih.gov/pubmed/35628505
http://dx.doi.org/10.3390/ijms23105695
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