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Preparation and Characterization of β-Tricalcium Phosphate Nanofibers via Electrospinning

机译:静电纺丝法制备β-磷酸三钙纳米纤维及其表征

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β-tricalcium phosphate (TCP) ceramic nanofibers via electrospinning route have been produced using β-TCP sol, which was prepared by the mixing of calcium nitrate tetrahydrate and triethyl phosphate as Ca sand P precursors, respectively. The as-prepared sol was tightly caped and aged in a drying oven at 90 ℃ for 16 hrs. The aged sol was evaporated in opened containers at 35 ℃ to reach a proper value of viscosity (100 cPs). Viscous solution was prepared by the mixing of β-TCP sol and high-molecular weight PVP to obtain appropriate viscosity for electrospinning. The mixed solution of β-TCP and PVP with various ratios were vigorously mixed using hot plate/stirrer for 24 hrs and then electrospun. The as-electrospun β-TCP nanofibers were dried in a drying oven at 60℃ for 12 hrs and then heat-treated at 500, 600, 700 and 800 ℃ at 1℃/min heating rate in air. Surface morphology and phase identification of as-spun and heat-treated β-TCP nanofibers were studied. The results have shown that ratio between PVP and β-TCP sol and heat-treatment conditions significantly affected the crystalline phase and morphology of β-TCP nanofibers.
机译:β-TCPsol溶胶是通过电纺法制备的β-磷酸三钙(TCP)陶瓷纳米纤维,它是通过分别将四水合硝酸钙和磷酸三乙酯作为Ca砂P前体混合而制备的。将所制备的溶胶盖紧并在90℃的干燥箱中老化16小时。老化后的溶胶在打开的容器中于35℃蒸发,以达到合适的粘度值(100 cPs)。通过混合β-TCP溶胶和高分子量PVP来制备粘性溶液,以获得适合静电纺丝的粘度。使用加热板/搅拌器将各种比例的β-TCP和PVP的混合溶液剧烈混合24小时,然后进行电纺丝。静电纺丝后的β-TCP纳米纤维在60℃的烘箱中干燥12个小时,然后在空气中以1℃/ min的加热速率在500、600、700和800℃下进行热处理。研究了初生和热处理过的β-TCP纳米纤维的表面形态和相鉴定。结果表明,PVP与β-TCP溶胶的比例和热处理条件显着影响了β-TCP纳米纤维的结晶相和形貌。

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