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Nanoceria: A rare-earth nanoparticle as a promising anti-cancer therapeutic agent in colon cancer

机译:纳米腔:一种稀土纳米粒子,是结肠癌有前途的抗癌治疗剂

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The bioactivity and physical characteristics of CeO2 nanoparticles are significantly dependent on the type of the particle, particle size and defects. Herein, a facile and cost effective microwave-assisted combustion route was used to prepare pure CeO2 nanoparticles (NPs). The samples were thoroughly characterized by various techniques and tested as anti-cancer therapeutic agent in colon cancer. The structural investigations (X-ray Powder Diffraction) revealed the formation of single phase cubic fluorite-type structure of CeO2 with Fm-3m space group. Morphological analysis (FESEM), demonstrated the aggregation of irregular nanoparticles with grain size similar to 20-40 nm. To have more knowledge on the sample morphology, TEM and HRTEM images were taken. TEM image showed ceria NPs with squared shape and particle size in 50-95 nm range. Furthermore, HR-TEM micrographs confirmed the crystallinity of the CeO2 sample, which was explored by calculating the distance between the fringes in the corresponding Fourier transformed images. The BET specific surface area (SSA) of as-synthesized ceria nanoparticles, was observed to be 25 m(2)/g. UV-vis spectral analysis reveals that the direct band gap of CeO2 nanoparticles is about 2.8 eV.
机译:CeO2纳米粒子的生物活性和物理特性显着取决于颗粒,粒度和缺陷的类型。这里,使用容易和成本有效的微波辅助燃烧路线制备纯CeO2纳米颗粒(NPS)。通过各种技术彻底地表征样品并在结肠癌中作为抗癌治疗剂进行测试。结构研究(X射线粉末衍射)显示CEO2与FM-3M空间组的单相立方萤石型结构的形成。形态学分析(FeSEM),证明了具有与20-40nm相似的晶粒尺寸的不规则纳米颗粒的聚集。为了了解对样品形态的了解,采取了TEM和HRTEM图像。 TEM图像显示有线形状和50-95 nm范围内的平方形状和粒径。此外,HR-TEM显微照片证实了CEO2样品的结晶度,通过计算相应的傅里叶变换图像中的条纹之间的距离来探索。观察到由合成的二氧化铈纳米颗粒的BET比表面积(SSA)为25μm(2)/ g。 UV-Vis光谱分析表明,CeO2纳米粒子的直接带隙约为2.8eV。

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