锰混合羟基磷灰石纳米陶瓷:生物活性、介电和发光研究

M. Mahabole, Manjushree Bahir, R. Khairnar
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引用次数: 4

摘要

摘要:本研究采用模拟体液(SBF)溶液对锰混合羟基磷灰石(Mn-HAp)微丸进行体外生物活性研究。采用XRD、FTIR、SEM/EDAX等手段对样品进行表征。研究了Mn-HAp样品的介电和光致发光特性与SBF中孵育时间的关系。XRD谱图显示,锰离子部分取代钙离子后,六方磷灰石结构仍保持完整。在FTIR光谱中,由于磷酸基团引起的吸收变化证实了磷灰石在Mn-HAp表面的生长。SEM/ EDAX研究表明,Mn-HAp表面促进磷灰石生长而不改变其结构,因为磷灰石在Mn-HAp表面成核生长。经孵育后,Mn-HAp的介电常数增大。随着m-SBF浸泡时间的增加,锰交换羟基磷灰石的介电常数降低。光致发光(PL)研究表明,Mn-HAp可以作为稳定、高效的蓝色发光材料。
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Mn Blended Hydroxyapatite Nanoceramic: Bioactivity, Dielectric and Luminescence Studies
Abstract: In this study, in-vitro bioactivity of manganese blended hydroxyapatite (Mn-HAp) pellets is carried out using simulated body fluid (SBF) solution. The incubated Mn-HAp samples are characterized by XRD, FTIR and SEM/EDAX. Dielectric and photoluminescence properties of Mn-HAp samples are studied as a function of incubation period in SBF. XRD profiles show that hexagonal apatite structure remains intact after partial replacement of calcium ions by manganese ions and even after incubation. The change in absorption due to phosphate group, depicted in FTIR spectra, for incubated samples confirms growth of apatite on Mn-HAp surface. SEM/ EDAX studies suggest that Mn-HAp surface promotes the growth of apatite without changing its structure due to apatite nucleation and growth on the surface of Mn-HAp. The value of dielectric constant of Mn-HAp increases after incubation. Increase in period of immersion in m-SBF leads to decrease in dielectric constant of manganese exchanged hydroxyapatite. The photoluminescence (PL) study reveals that the Mn-HAp can be used stable and efficient blue luminescent material.
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