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超声辐射对 nHAp/MWCNT 纳米复合材料生产的影响。

Effect of ultrasound irradiation on the production of nHAp/MWCNT nanocomposites.

机构信息

Laboratory of Biomedical Nanotechnology, Development Research Institute (IP&D), Universidade do Vale do Paraiba (Univap), Av. ShishimaHifumi, 2911, São José dos Campos, 12244-000 SP, Brazil.

出版信息

Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):4305-12. doi: 10.1016/j.msec.2013.06.032. Epub 2013 Jun 28.

Abstract

Large amounts of nanohydroxyapatite (nHAp)-multiwall carbon nanotube (MWCNT) nanocomposites are produced by two different aqueous precipitation methods. The ultrasonic irradiation (UI) and slow-drip addition under continuous magnetic stirring (DMS) methods were used to investigate the precipitation of nHAp acicular crystals. Calcium-nitrate, diammonium hydrogen phosphate, and ammonium hydroxide were used as precursor reagents. Superhydrophilic MWCNT were also employed. XPS analysis evidences that the functionalized MWCNTs are composed of 18 to 20 at.% of oxygen and that this property influences the nHAp formation. The high surface area of the MWCNT decreases the mean free path of ions, favoring the nHAp formation assisted by UI. The crystallinity was evaluated using the Scherrer equation. Semi-qualitative energy dispersive spectroscopy (EDS) analysis showed that the main components of HAp powders were calcium and phosphorus in the ratio Ca/P around of 1.67. Bioactivity properties of the nHAp/MWCNT-UI nanocomposites could be evaluated after 14 days soaking in simulated body fluid medium. Scanning electron microscopy, EDS, Fourier transform infrared attenuated total reflection spectroscopy, and X-ray diffraction techniques proved that the apatites formed on the surface and to points that the nHAp/MWCNT-UI have potential biological applications.

摘要

大量纳米羟基磷灰石(nHAp)-多壁碳纳米管(MWCNT)纳米复合材料通过两种不同的水相沉淀法制备。超声辐射(UI)和连续磁搅拌下的缓慢滴加法(DMS)用于研究 nHAp 针状晶体的沉淀。使用硝酸钙、磷酸二氢铵和氨水溶液作为前体试剂。还使用了超亲水性 MWCNT。XPS 分析表明,功能化的 MWCNT 由 18 到 20 原子%的氧组成,这种特性影响 nHAp 的形成。MWCNT 的高表面积减小了离子的自由程,有利于 UI 辅助的 nHAp 形成。结晶度使用谢勒方程进行评估。半定量能量色散光谱(EDS)分析表明,HAp 粉末的主要成分是钙和磷,Ca/P 比约为 1.67。在模拟体液介质中浸泡 14 天后,可以评估 nHAp/MWCNT-UI 纳米复合材料的生物活性。扫描电子显微镜、EDS、傅里叶变换衰减全反射光谱和 X 射线衍射技术证明,在表面和点上形成了磷灰石,表明 nHAp/MWCNT-UI 具有潜在的生物应用。

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