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Time-resolved luminescence spectroscopy for monitoring the stability and dissolution behaviour of upconverting nanocrystals with different surface coatings

机译:时间分辨荧光光谱的监测的稳定性和解散的行为upconverting纳米晶体不同的表面涂层

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摘要

We demonstrate the potential of time-resolved luminescence spectroscopy for the straightforward assessment andin situmonitoring of the stability of upconversion nanocrystals (UCNPs). Therefore, we prepared hexagonal NaYF4:Yb3+,Er(3+)UCNPs with various coatings with a focus on phosphonate ligands of different valency, using different ligand exchange procedures, and studied their dissolution behaviour in phosphate-buffered saline (PBS) dispersions at 20 degrees C and 37 degrees C with various analytical methods. The amount of the released UCNPs constituting fluoride ions was quantified by potentiometry using a fluoride ion-sensitive electrode and particle disintegration was confirmed by transmission electron microscopy studies of the differently aged UCNPs. In parallel, the luminescence features of the UCNPs were measured with special emphasis on the lifetime of the sensitizer emission to demonstrate its suitability as screening parameter for UCNP stability and changes in particle composition. The excellent correlation between the changes in luminescence lifetime and fluoride concentration highlights the potential of our luminescence lifetime method for UCNP stability screening and thereby indirect monitoring of the release of potentially hazardous fluoride ions during uptake and dissolution in biological systems. Additionally, the developedin situoptical method was used to distinguish the dissolution dynamics of differently sized and differently coated UCNPs.
机译:我们将演示时间分辨的潜力发光光谱的简单的评估,只有situmonitoring稳定的上转换纳米晶体(UCNPs)。我们准备好的六角NaYF4: Yb3 +, Er (3 +) UCNPs各种涂料重点膦酸酯使用不同的配体不同的价配位体交换过程和他们的学习在磷酸盐溶解行为盐水(PBS)分散在20摄氏度,37岁度的各种分析方法。的释放UCNPs构成氟离子被电位法量化使用氟化物ion-sensitive电极证实了粒子衰变透射电子显微镜的研究不同年龄UCNPs。UCNPs发光特性的测量特别强调的生命周期敏化剂发射来展示它适用性作为UCNP筛选参数稳定性和粒子组成的变化。的变化之间的相关性发光寿命和氟化物浓度突出我们的发光的潜力生命周期方法UCNP筛查和稳定从而间接监测的释放有潜在危险的氟离子吸收生物系统和解散。此外,developedin situoptical方法是用来区分溶解动力学不同大小和不同涂层

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