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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Mesoporous multi-silica layer-coated Y2O3:Eu core-shell nanoparticles: Synthesis, luminescent properties and cytotoxicity evaluation
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Mesoporous multi-silica layer-coated Y2O3:Eu core-shell nanoparticles: Synthesis, luminescent properties and cytotoxicity evaluation

机译:中孔多二氧化硅层涂覆的Y2O3:Eu核 - 壳纳米粒子:合成,发光特性和细胞毒性评估

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Mesoporous multi-layered silica-coated luminescent Y2O3:Eu nanoparticles (NPs) were prepared by a urea-based decomposition process, and their surfaces were gradually modified with nanoporous and mesoporous silica layers using modified sol-gel methods. The synthesized luminescent core-shell NPs were characterized thoroughly to investigate their structural, morphological, thermal, optical, photo luminescent properties and their surface chemistry. The morphology of the core NPs were nearly spherical in shape and were nano-sized grains. The observed luminescent efficiency of the mesoporous multi-layered silica-coated luminescent core NPs was gradually reduced because of bond formation between the Y2O3:Eu core and the amorphous silica shell via Y-O-Si-OH bridges on the surface of the NPs; the bonds suppressed the non-radiative transition pathways. Biocompatibility tests on Human breast cancer cells using the 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and lactate dehydrogenase assays indicated that the core-shell NPs were non-toxic even at high concentrations. The mesoporous SiO2 layer played a key role in perfecting the solubility, biocompatibility, and non-toxicity of the NPs. The zeta potential, surface chemistry (Fourier transform infrared spectroscopy), and optical absorption spectral analyses revealed the high hydrophilicity of the as-prepared core-shell NPs because of the active surface-functionalized silanol (Si-OH) groups, which could potentially offer many exciting opportunities in photonic-based biomedical applications.
机译:中孔多层二氧化硅涂覆的发光Y2O3:通过基于尿素的分解方法制备EU纳米颗粒(NPS),并使用改性溶胶 - 凝胶方法逐渐用纳米多孔和中孔二氧化硅层逐渐改性它们的表面。合成的发光核心 - 壳NPS彻底地表征,以研究其结构,形态,热,光学,光照性能及其表面化学。核心NP的形态呈几乎是球形的,是纳米尺寸的晶粒。由于Y2O3:Eu核和非晶硅壳在NPS的表面上通过Y-O-Si-OH桥之间的键形成,所观察到的介孔多层二氧化硅涂覆的发光核心NPS的发光效率逐渐减少;键抑制了非辐射转变途径。使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴铵和乳酸脱氢酶测定的人乳腺癌细胞对人乳腺癌细胞的生物相容性试验表明,即使在高浓度下,核心壳NPS也无毒。中孔SiO2层在完善NPS的溶解度,生物相容性和非毒性方面发挥了关键作用。 Zeta电位,表面化学(傅立叶变换红外光谱)和光学吸收光谱分析显示了由于活性表面官能化的硅烷醇(Si-OH)组,所以可能提供的硅烷醇(Si-OH)组的高亲水性基于光子的生物医学应用中的许多令人兴奋的机会。

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