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首页> 外文期刊>RSC Advances >Upconverting/magnetic: Gd2O3:(Er3+,Yb3+,Zn2+) nanoparticles for biological applications: effect of Zn2+ doping
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Upconverting/magnetic: Gd2O3:(Er3+,Yb3+,Zn2+) nanoparticles for biological applications: effect of Zn2+ doping

机译:上变频/磁性:GD2O3 :( ER3 +,YB3 +,Zn2 +)生物应用纳米颗粒:Zn2 +掺杂的影响

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摘要

Upconverting Gd2O3 nanoparticles (NPs) doped 1% Er3+ and 18% Yb3+ permits one to perform optical imaging. Because of the presence of Gd3+ they are useful in MRI. The main challenge is to enhance the NPs upconversion efficiency. As a result of co-doping the NPs with Zn2+ ions, achieved using microwave-induced solution combustion synthesis, we obtained optimal upconversion quantum yields (UQYs). The breakdown of the local crystal field symmetry around the rare earth ions, maximal in the presence of 5% of zinc, may be responsible for the highest observed UQY. The upconversion of IR light results in emission of visible red light mainly at 660 nm and at 550 nm. Optimized red photoluminescence of the samples observed in an organic environment was examined as a function of the laser power density to explain the mechanism of the upconversion emission. Paramagnetic properties of the NPs were determined by superconducting quantum interference device measurements. The non-functionalized nanoparticles incubated with HeLa cells were endocytosed and imaged by confocal laser scanning microscopy. We investigated their localization inside HeLa cells for various incubation times and NPs concentrations. PrestoBlue toxicity assay was performed to test the NPs bioefficacy.
机译:掺杂Gd2O3纳米颗粒(NPS)掺杂1%ER3 +和18%YB3 +允许人进行光学成像。由于GD3 +的存在,它们在MRI中是有用的。主要挑战是提高NPS上调效率。通过使用微波诱导的溶液燃烧合成实现的具有Zn2 +离子的NPS,我们获得了最佳的上变化量子产量(UQYS)。稀土离子周围的局部晶体场对称的分解,在5%的锌存在下最大值,可能是最高观察到的UQY。 IR光的上升性导致主要在660nm和550nm处发射可见红光。检查在有机环境中观察到的样品的优化红色光致发光作为激光功率密度的函数,以解释上变频发射的机制。通过超导量子干扰装置测量确定NP的顺磁性性质。将与HeLa细胞孵育的非官能化纳米颗粒通过共聚焦激光扫描显微镜进行内核细胞和成像。我们研究了Hela细胞内部化的各种培养时间和NPS浓度。进行尿素毒性测定以测试NPS生物效率。

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  • 来源
    《RSC Advances》 |2015年第95期|共13页
  • 作者单位

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    HORIBA PTI Canada Fast Kinet Applicat Lab London ON N6E 2S8 Canada;

    HORIBA PTI Canada Fast Kinet Applicat Lab London ON N6E 2S8 Canada;

    Univ Warsaw Fac Biol Inst Genet &

    Biotechnol PL-00325 Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Univ Warsaw Fac Biol Inst Genet &

    Biotechnol PL-00325 Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

    Nicolaus Copernicus Univ Fac Phys Astron &

    Informat Inst Phys Torun Poland;

    Nicolaus Copernicus Univ Fac Phys Astron &

    Informat Inst Phys Torun Poland;

    Nicolaus Copernicus Univ Fac Phys Astron &

    Informat Inst Phys Torun Poland;

    Mil Univ Technol Inst Optoelect Warsaw Poland;

    Mil Univ Technol Inst Optoelect Warsaw Poland;

    Mil Univ Technol Inst Optoelect Warsaw Poland;

    Mil Univ Technol Inst Optoelect Warsaw Poland;

    Mil Univ Technol Inst Optoelect Ctr Biomed Engn Warsaw Poland;

    Polish Acad Sci Inst Phys Warsaw Poland;

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  • 正文语种 eng
  • 中图分类 化学;
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