首页> 外文期刊>The Journal of Chemical Physics >Controlled synthesis and characterization of NaYF4:Yb/Er upconverting nanoparticles produced by laser ablation in liquid
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Controlled synthesis and characterization of NaYF4:Yb/Er upconverting nanoparticles produced by laser ablation in liquid

机译:NayF4的受控合成和表征:通过激光烧蚀在液体中产生的Yb / ER上变化纳米颗粒

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摘要

Upconverting nanoparticles (UCNPs) composed of NaYF4 and doped with photoactive Yb3+ and Er3+ (NaYF4:Yb/Er) are highly desirable for many biological applications, but obtaining stable dispersions of UCNPs is challenging. Traditional synthetic methods often use complicated synthetic steps, produce toxic side products, and require post modifications to make UCNPs more dispersible in aqueous solutions. In this study, we demonstrate that laser ablation in liquid (LAL) is a novel approach to synthesize water-dispersible and -stable UCNPs with advantages of particle-size tuning, in situ coating of UCNPs with capping agents, no use of toxic or high boiling point solvents, and short reaction times. NaYF4:Yb/Er UCNPs were produced through LAL of annealed targets using water as the liquid, and their compositions and properties were investigated at a laser fluence of 0.57 J cm(-2)-6.22 J cm(-2) by direct capping with citric acid and ethylene glycol and by comparing with the UCNPs prepared from the traditional hydrothermal method. Low laser fluences produced polydisperse particles consisting of no photoactive species through a thermal evaporation mechanism, while high laser fluences generated UCNPs with more uniform morphologies and compositions similar to the target material by an explosive ejection mechanism. The inclusion of capping agents during LAL allowed for direct coating of the UCNP surface without the need of post modifications, and the concentrations of capping agents affected the UCNP photoluminescence lifetimes. As compared to the hydrothermal method, the LAL-prepared samples showed better size control and no degradation of the capping agents.
机译:对于许多生物学应用,由NayF 4和掺杂有光活性YB3 +和ER3 +(NayF 4:YB / ER)的上变频纳米颗粒(UCNP)非常希望,但是获得UCNP的稳定分散性是挑战性的。传统的合成方法经常使用复杂的合成步骤,产生有毒侧产品,并要求修饰后使UCNP在水溶液中更可分散。在这项研究中,我们证明了液体(LAL)中的激光消融是一种新的方法,用于合成具有粒度调谐的优点,利用封端剂的UCNPS的优点来合成水分散性和可靠性UCNP的方法,不使用毒性或高沸点溶剂,反应时间短。的NaYF 4:镱/铒UCNPs是通过LAL制备使用水作为液体退火目标,和它们的组成和性能在0.57Ĵ厘米(-2)-6.22Ĵ厘米(-2)由直接覆盖的与激光能量密度进行了调查柠檬酸和乙二醇,通过与由传统水热法制备的UCNP进行比较。低激光流量产生的多分散颗粒通过热蒸发机理组成,而高激光流量通过爆炸喷射机构产生更均匀的形态和组合物,产生更均匀的形态和组合物。在LAL期间包含封端剂允许直接涂覆UCNP表面而不需要后修饰,并且封端剂的浓度影响了UCNP光致发光的寿命。与水热法相比,LAL制备的样品显示出更好的尺寸控制和封端剂的降解。

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