2020
DOI: 10.1039/d0ma00212g
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Low temperature consolidation of hydroxyapatite-reduced graphene oxide nano-structured powders

Abstract: In this study, hydroxyapatite-reduced graphene oxide (HA-rGO) powders were first synthesized in situ by a hydrothermal method. These powders were then consolidated using a cold sintering method. The solvent used...

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Cited by 8 publications
(3 citation statements)
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“…Recently, large ceramic particles can be fractured and rearranged during high-pressure-assisted sintering, which provides a viable route for fabricating fully dense ceramics even using anisotropic-shaped powders [19,20]. For example, with the aid of a high pressure (5 GPa), Y 2 O 3 nanorod powder compact can achieve near full density through particle fracture, rearrangement, deformation, and interface sliding at only 500 ℃ without atomic diffusion [20].…”
Section: Introductionmentioning
confidence: 99%
“…Recently, large ceramic particles can be fractured and rearranged during high-pressure-assisted sintering, which provides a viable route for fabricating fully dense ceramics even using anisotropic-shaped powders [19,20]. For example, with the aid of a high pressure (5 GPa), Y 2 O 3 nanorod powder compact can achieve near full density through particle fracture, rearrangement, deformation, and interface sliding at only 500 ℃ without atomic diffusion [20].…”
Section: Introductionmentioning
confidence: 99%
“…Agglomeration will directly result in heterogeneity of the packed green bodies, which will cause a phenomenon referred to as differential sintering [15]. It is inspiring that anisotropic-shaped powders, rather than spherical/near-spherical powders, can improve the densi cation process and provide some new densifying routes [16,17]. For example, with the aid of high pressure (5 GPa), Y 2 O 3 nanorod powder compact can achieve near full density through particle fracture, rearrangement, deformation, and interface sliding at only 500°C without atomic diffusion [16].…”
Section: Introductionmentioning
confidence: 99%
“…Among these bioceramics, HA is less soluble in the biological environment and therefore suitable for orthopedic applications as an implant [1,2]. HA is synthesized in a variety of ways, including combustion preparation, solid-state reaction, electrochemical deposition, sol-gel, hydrolysis, precipitation, sputtering, multiple emulsion, biomimetic deposition, solvothermal method, and hydrothermal process [3][4][5][6][7][8][9][10][11][12][13][14][15]. The variety of methods has made it possible to synthesize these ceramics in various forms such as rods, wires, ribbons, and tubes [16][17][18][19][20][21].…”
Section: Introductionmentioning
confidence: 99%