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Preparation and characterization of calcium phosphate nanorods using reverse microemulsion and hydrothermal processing routes

机译:反相微乳液和水热处理工艺制备磷酸钙纳米棒

摘要

Brushite (BR) and hydroxyapatite (HA) nanoparticles were fabricated through reverse microemulsion and hydrothermal processing route, respectively. The processing routes influenced nucleation and crystal growth although both methods resulted in nanorods formation. The calcium-to-phosphate ratio was 1.67, similar to that of natural bone and teeth. X-ray diffraction patterns revealed that the nanorods possessed almost pure crystal phase with negligible second phase. The ratio of particle length-to-width of BR and HA were approximately 3 and 4, respectively. To mimic the natural bone, chitosan/brushite (CTS/BR) and chitosan/hydroxyapatite (CTS/HA) nanocomposite scaffolds were prepared through rapid freeze-drying technique. The compressive strength of CTS/BR and CTS/HA nanocomposite scaffolds was compared for the first time. The compression test revealed that both the nanocomposite scaffolds exhibited reasonably high compressive strength of approximately 7 MPa. This value falls in the high-end range of cancellous bone's compressive strength, with the compressive strength of CTS/HA 0.88 MPa more than CTS/BR.
机译:分别通过反向微乳液和水热处理工艺制备了透钙磷石(BR)和羟基磷灰石(HA)纳米粒子。尽管这两种方法均会导致纳米棒的形成,但加工路径仍会影响成核和晶体生长。钙磷比为1.67,与天然骨骼和牙齿相似。 X射线衍射图谱表明,纳米棒具有几乎纯的晶相和可忽略的第二相。 BR和HA的颗粒长宽比分别约为3和4。为了模拟天然骨,通过快速冷冻干燥技术制备了壳聚糖/硬脂石(CTS / BR)和壳聚糖/羟基磷灰石(CTS / HA)纳米复合支架。首次比较了CTS / BR和CTS / HA纳米复合材料支架的抗压强度。压缩测试表明,两种纳米复合材料支架均显示出大约7 MPa的相当高的压缩强度。该值在松质骨抗压强度的高端范围内,CTS / HA的抗压强度比CTS / BR高0.88 MPa。

著录项

  • 作者

    Lim H.N.; Kassim A.; Huang N.M.;

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  • 年度 2010
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  • 入库时间 2022-08-20 19:41:57

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