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A Green Biocompatible Fabrication of Highly Porous Functional Ceramics with High Strength and Controllable Pore Structures 被引量:4

A Green Biocompatible Fabrication of Highly Porous Functional Ceramics with High Strength and Controllable Pore Structures
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摘要 A green biocompatible foaming method utilizing natural coconut oil and cornstarch was developed to fabricate highly porous functional ceramics with controllable strengths and pore structures. The poros- ity of A1203 ceramics prepared via this method reached 79.6%-86.9% while these ceramics maintained high compressive strengths of 2.2-5.5 MPa. More importantly, porous A1203 ceramic with a pore size gra- dient was also readily fabricated by casting serial layers of foams that were set for different time periods. The potential applications of porous Al2O3 and HA ceramics fabricated by this green foaming method in- cluding scaffolds for oil cleaning and cell culture, respectively, were also demonstrated. A green biocompatible foaming method utilizing natural coconut oil and cornstarch was developed to fabricate highly porous functional ceramics with controllable strengths and pore structures. The poros- ity of A1203 ceramics prepared via this method reached 79.6%-86.9% while these ceramics maintained high compressive strengths of 2.2-5.5 MPa. More importantly, porous A1203 ceramic with a pore size gra- dient was also readily fabricated by casting serial layers of foams that were set for different time periods. The potential applications of porous Al2O3 and HA ceramics fabricated by this green foaming method in- cluding scaffolds for oil cleaning and cell culture, respectively, were also demonstrated.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2016年第8期729-732,共4页 材料科学技术(英文版)
基金 Jiangsu Innovation and Entrepreneurship Program Jiangsu Provincial Special Program of Medical Science (BL2012004) Jiangsu R&D Innovation Program (BY2014059-07) the Priority Academic Program Development of Jiangsu High Education Institutions the National Natural Science Foundation of China (No. 51472279) the Jiangsu Six Peak of Talents Program (2013-WSW-056) for financial supports
关键词 Porous ceramic Pore structure Bioceramics Hydroxyapatite Alumina Porous ceramic Pore structure Bioceramics Hydroxyapatite Alumina
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