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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface Characteristics of Nanocrystalline Apatites: Effect of Mg Surface Enrichment on Morphology, Surface Hydration Species, and Cationic Environments
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Surface Characteristics of Nanocrystalline Apatites: Effect of Mg Surface Enrichment on Morphology, Surface Hydration Species, and Cationic Environments

机译:纳米晶磷灰石的表面特征:镁表面富集对形态,表面水合物种和阳离子环境的影响

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The incorporation of foreign ions, such as Mg2+, exhibiting a biological activity for bone regeneration is presently considered as a promising route for increasing the bioactivity of bone-engineering scaffolds. In this work, the morphology, structure, and surface hydration of biomimetic nanocrystalline apatites were investigated before and after surface exchange with such Mg2+ ions, by combining chemical alterations (ion exchange, H2O-D2O exchanges) and physical examinations (Fourier transform infrared spectroscopy (FTIR) and high- resolution transmission electron microscopy (HRTEM)). HRTEM data suggested that the Mg2+/Ca2+ exchange process did not affect the morphology and surface topology of the apatite nanocrystals significantly. while a new phase, likely a hydrated calcium and/or magnesium phosphate, was formed in small amount for high Mg concentrations. Near-infrared (NIR) and medium-infrared (MIR) spectroscopies indicated that the samples enriched with Mg2+ were found to retain more water at their surface than the Mg-free sample, both at the level of H2O coordinated to cations and adsorbed in the form of multilayers. Additionally, the H-bonding network in defective subsurface layers was also noticeably modified. indicating that the Mg2+/Ca2+ exchange involved was not limited to the surface. This work is intended to widen the present knowledge oil Mg-enriched calcium phosphate-based bioactive materials intended for bone repair applications.
机译:目前认为掺入对骨骼再生具有生物活性的诸如Mg2 +的外来离子被认为是增加骨骼工程支架生物活性的有前途的途径。在这项工作中,通过结合化学变化(离子交换,H2O-D2O交换)和物理检查(傅立叶变换红外光谱法(Fourier变换红外光谱法,(Fourier变换红外光谱法,)),研究了仿生纳米晶磷灰石在与此类Mg2 +离子进行表面交换之前和之后的形态,结构和表面水化作用。 FTIR)和高分辨率透射电子显微镜(HRTEM)。 HRTEM数据表明,Mg2 + / Ca2 +交换过程不会显着影响磷灰石纳米晶体的形貌和表面拓扑。而对于高浓度的Mg,会形成少量的新相,可能是水合的钙和/或磷酸镁。近红外(NIR)和中红外(MIR)光谱表明,富含Mg2 +的样品比不含Mg的样品在其表面保留更多的水,无论是在与阳离子配位并在H2O上吸附的H2O含量。形式的多层。此外,缺陷次表层的氢键网络也得到了显着改进。表明所涉及的Mg2 + / Ca2 +交换不限于表面。这项工作旨在拓宽用于骨骼修复应用的本领域知识油中富含镁的磷酸钙基生物活性材料。

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