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Luminescence properties and cell uptake analysis of Y 2O 3:Eu, Bi nanophosphors for bio-imaging applications

机译:Y 2 O 3 :欧盟,BIO纳米膦 - 漫步应用程序

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A comparative investigation of nanostructural and photoluminescence properties (PL), functionalization, cytotoxicity and cell uptake of Y2O3:Eu3+,Bi3+nanoparticles (NPs) fabricated by sol–gel (SG) and combustion synthesis (CS) is reported in this work. A detailed analysis by X-ray diffraction confirmed the formation of pure crystalline cubic phase of Y2O3and transmission electron microscopy revealed the formation of spheroidal NPs by SG, while CS resulted in NPs with irregular morphology. The photoluminescence analysis of Y2O3: Eu3+,Bi3+demonstrated red emission from Eu3+upon near-UV excitation via energy transfer from Bi3+→Eu3+. The Y2O3:Eu3+, Bi3+(4%, 0.1%) produced by SG approach presented the strongest red emission when excited under 254 and 330?nm excitation-wavelength with quantum yield value of 76% and 22% respectively. SG synthesized Y2O3:Eu3+, Bi3+(4%, 0.1%) NPs were successfully functionalized with folic acid (FA) for cellular internalization. Cytotoxicity assay and flow cytometry studies of the FA functionalized Y2O3:Eu3+, Bi3+(4%, 0.1%) NPs in various cancer cells showed good biocompatibility and cellular uptake. Our findings suggest the applicability of sol gel synthesized Y2O3:Eu3+, Bi3+(4%, 0.1%) NPs for cancer cells bioimaging.
机译:在这项工作中报道了由溶胶 - 凝胶(SG)和燃烧合成(CS)制造的纳米结构和光致发光性质(PL),官能化,细胞毒性和细胞摄取的纳米结构和光致发光性质(PL),官能化,细胞毒性和细胞吸收(CS)。通过X射线衍射进行详细分析,证实了Y2O3和透射电子显微镜的纯结晶立方相的形成显示,SG形成球形NPS的形成,而CS导致NPS具有不规则形态。 Y2O3:Eu3 +,Bi3 +的光致发光分析证明了通过Bi3 +→Eu3 +的能量转移近UU3 +的红色发射。由SG方法产生的Y2O3:Eu3 +,Bi3 +(4%,0.1%)在254和330℃激发下激发时的最强的红色发射分别具有76%和22%的量子屈服值。 SG合成Y2O3:EU3 +,Bi3 +(4%,0.1%)NPS与叶酸(FA)成功官能化,用于细胞内化。在各种癌细胞中的FA官能化Y2O3:Eu3 +,Bi3 +(4%,0.1%)NPS的细胞毒性测定和流式细胞术研究显示出良好的生物相容性和细胞摄取。我们的研究结果表明溶胶凝胶合成的Y2O3:Eu3 +,Bi3 +(4%,0.1%)NPS的适用性用于癌细胞生物成像。

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