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Effective Shielding of NaYF4:Yb3+Er3+ Upconverting Nanoparticles in Aqueous EnvironmentsUsing Layer-by-Layer Assembly

机译:在水环境中有效屏蔽NaYF4:Yb3 +Er3 +上转换纳米颗粒使用逐层装配

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摘要

Aqueous solutions are the basis for most biomedical assays, but they quench the upconversion luminescence significantly. Surface modifications of upconverting nanoparticles are vital for shielding the obtained luminescence. Modifications also provide new possibilities for further use by introducing attaching sites for biomolecule conjugation. We demonstrate the use of a layer-by-layer surface modification method combining varying lengths of negatively charged polyelectrolytes with positive neodymium ions in coating the upconverting NaYF4:Yb3+,Er3+ nanoparticles. We confirmed the formation of the bilayers and investigated the surface properties with Fourier transform infrared and reflectance spectroscopy, thermal analysis, and ζ-potential measurements. The effect of the coating on the upconversion luminescence properties was characterized, and the bilayers with the highest improvement in emission intensity were identified. In addition, studies for the nanoparticle and surface stability were carried out in aqueous environments. It was observed that the bilayers were able to shield the materials’ luminescencefrom quenching also in the presence of phosphate buffer that is currentlyconsidered the most disruptive environment for the nanoparticles.
机译:水溶液是大多数生物医学测定的基础,但它们可显着淬灭上转换发光。上转换纳米粒子的表面修饰对于屏蔽获得的发光至关重要。通过引入用于生物分子缀合的附着位点,修饰也为进一步使用提供了新的可能性。我们演示了使用逐层表面修饰方法,将不同长度的带负电荷的聚电解质与正钕离子结合使用,以涂覆上转换的NaYF4:Yb 3 + ,Er 3 + 纳米粒子。我们确认了双层的形成,并通过傅立叶变换红外和反射光谱,热分析和ζ电位测量研究了表面性质。表征了涂层对上转换发光性能的影响,并鉴定出具有最大发射强度改善的双层。另外,在水性环境中进行了纳米颗粒和表面稳定性的研究。观察到双层能够屏蔽材料的发光也可以在目前存在的磷酸盐缓冲液存在下淬灭被认为是纳米颗粒最具破坏性的环境。

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