<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE ArticleSet PUBLIC "-//NLM//DTD PubMed 2.7//EN" "https://dtd.nlm.nih.gov/ncbi/pubmed/in/PubMed.dtd">
<ArticleSet>
<Article>
<Journal>
				<PublisherName>Semnan University Press</PublisherName>
				<JournalTitle>Innovations in Materials: Current &amp; Future</JournalTitle>
				<Issn>3115-9990</Issn>
				<Volume>1</Volume>
				<Issue>1</Issue>
				<PubDate PubStatus="epublish">
					<Year>2026</Year>
					<Month>01</Month>
					<Day>01</Day>
				</PubDate>
			</Journal>
<ArticleTitle>Synthesis and Characterization of Polyethylene Terephthalate–Derived Graphene Reinforced Hydroxyapatite–Kaolin Composites for Bone Tissue Engineering</ArticleTitle>
<VernacularTitle></VernacularTitle>
			<FirstPage>12</FirstPage>
			<LastPage>26</LastPage>
			<ELocationID EIdType="pii">10329</ELocationID>
			
<ELocationID EIdType="doi">10.22075/imcf.2025.39269.1048</ELocationID>
			
			<Language>EN</Language>
<AuthorList>
<Author>
					<FirstName>Daniel Arinze</FirstName>
					<LastName>Ozieme</LastName>
<Affiliation>Department of Industrial Chemistry, College of Science and Technology, Covenant University Ota Ogun State, Nigeria</Affiliation>
<Identifier Source="ORCID">0000-0001-8260-5553</Identifier>

</Author>
<Author>
					<FirstName>Emmanuel</FirstName>
					<LastName>Anegbe</LastName>
<Affiliation>FunGlass – Centre for Functional and Surface Functionalized Glass, Študentská 2, 911 50 Trenčín, Slovakia</Affiliation>
<Identifier Source="ORCID">0000-0002-9503-7994</Identifier>

</Author>
</AuthorList>
				<PublicationType>Journal Article</PublicationType>
			<History>
				<PubDate PubStatus="received">
					<Year>2025</Year>
					<Month>10</Month>
					<Day>04</Day>
				</PubDate>
			</History>
		<Abstract>This study presents the synthesis and physicochemical characterization of a graphene–hydroxyapatite–kaolin (GHK) composite designed for potential artificial bone applications. Graphene was derived from recycled polyethylene terephthalate (PET) waste through pyrolysis at 600 °C, while hydroxyapatite (HAp) was synthesized from calcined eggshells and combined with kaolin clay. The powders were compacted and sintered at 1100 °C to produce three formulations. Porosity and density values were 22.5% and 2.75 g/cm³ for GHK-A, 19.8% and 2.85 g/cm³ for GHK-B, and 26.3% and 2.62 g/cm³ for GHK-C within the ASTM C373 standard range (porosity: 0–30%, density: 2.4–3.0 g/cm³). GHK-B exhibited the lowest porosity and highest density, indicating compactness and mechanical strength suitable for load-bearing bone applications. Fourier-transform infrared spectroscopy (FTIR) confirmed bands of PO₄³⁻ at 1030–960 cm⁻¹, OH⁻ stretching at 3570 cm⁻¹, and Si–O vibrations near 1100 cm⁻¹, validating the successful integration of HAp, kaolin, and graphene phases. X-ray diffraction (XRD) patterns showed distinct crystalline peaks corresponding to HAp planes at 2θ = 25.9°, 31.8°, and 39.9°, with GHK-B exhibiting sharper peaks than GHK-A and GHK-C, indicating improved crystallinity and phase purity. Scanning electron microscopy (SEM) revealed an interconnected porous network with flake-like graphene layers reinforcing the HAp-kaolin matrix suitable for osteoblast infiltration and nutrient transport. The synergy between graphene’s conductivity, HAp’s bioactivity, and kaolin reinforcement produced a composite with balanced structural properties. GHK-B demonstrated the most promising material combining cortical bone-like density (2.85 g/cm³), controlled porosity (19.8%), and superior crystalline structure suggesting its potential as a mechanically bioactive scaffold for bone tissue regeneration.</Abstract>
		<ObjectList>
			<Object Type="keyword">
			<Param Name="value">Graphene</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Hydroxyapatite</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">kaolin</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Waste recycling</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Artificial bone</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Bone Tissue Engineering</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Composites</Param>
			</Object>
		</ObjectList>
<ArchiveCopySource DocType="pdf">https://imcf.semnan.ac.ir/article_10329_ce128c3e8f0c0ae4b3e843dc7cbab0f7.pdf</ArchiveCopySource>
</Article>
</ArticleSet>
