首页> 外文OA文献 >Blue and Uv-Emitting Upconversion Nanoparticles: Synthesis and (Bio) Analytical Applications.
【2h】

Blue and Uv-Emitting Upconversion Nanoparticles: Synthesis and (Bio) Analytical Applications.

机译:蓝色和Uv发射上转换纳米粒子:合成和(生物)分析应用。

摘要

Rare-earth based upconverting nanoparticles (UCNPs) have attracted much attention due to their unique luminescent properties. The ability to convert multiple photons of lower energy to ones with higher energy through an upconversion (UC) process offers a wide range of applications for UCNPs. The emission intensities and wavelengths of UCNPs are important performance characteristics, which determine the appropriate applications. However, insufficient intensities still limit the use of UCNPs; especially the efficient emission of blue and ultraviolet (UV) light via upconversion remains challenging, as these events require three or more near-infrared (NIR) photons. The aim of the study was to enhance the blue and UV upconversion emission intensities of Tm3+ doped NaYF4 nanoparticles and to demonstrate their utility in in vitro diagnostics. As the distance between the sensitizer and the activator significantly affect the energy transfer efficiency, different strategies were explored to change the local symmetry around the doped lanthanides. One important strategy is the intentional co-doping of active (participate in energy transfer) or passive (do not participate in energy transfer) impurities into the host matrix. The roles of doped passive impurities (K+ and Sc3+) in enhancing the blue and UV upconversions, as well as in influencing the intense UV upconversion emission through excess sensitization (active impurity) were studied. Additionally, the effects of both active and passive impurity doping on the morphological and optical performance of UCNPs were investigated.The applicability of UV emitting UCNPs as an internal light source for glucose sensing in a dry chemistry test strip was demonstrated. The measurements were in agreement with the traditional method based on reflectance measurements using an external UV light source. The use of UCNPs in the glucose test strip offers an alternative detection method with advantages such as control signals for minimizing errors and high penetration of the NIR excitation through the blood sample, which gives more freedom for designing the optical setup. In bioimaging, the excitation of the UCNPs in the transparent IR region of the tissue permits measurements, which are free of background fluorescence and have a high signal-to-background ratio. In addition, the narrow emission bandwidth of the UCNPs enables multiplexed detections. An array-in-well immunoassay was developed using two different UC emission colours. The differentiation between different viral infections and the classification of antibody responses were achieved based on both the position and colour of the signal. The study demonstrates the potential of spectral and spatial multiplexing in the imaging based array-in-well assays.
机译:基于稀土的上转换纳米粒子(UCNP)由于其独特的发光特性而备受关注。通过上转换(UC)过程将多个能量较低的光子转换为能量较高的光子的能力为UCNP提供了广泛的应用。 UCNP的发射强度和波长是重要的性能特征,它决定了适当的应用。但是,强度不足仍然限制了UCNP的使用。特别是通过上转换有效地发射蓝色和紫外(UV)光仍然具有挑战性,因为这些事件需要三个或更多的近红外(NIR)光子。该研究的目的是增强Tm3 +掺杂的NaYF4纳米粒子的蓝光和UV上转换发射强度,并证明其在体外诊断中的实用性。由于敏化剂和活化剂之间的距离显着影响能量转移效率,因此探索了不同的策略来改变掺杂镧系元素周围的局部对称性。一种重要的策略是将主动(参与能量转移)或被动(不参与能量转移)杂质有意地共掺杂到基质中。研究了掺杂的被动杂质(K +和Sc3 +)在增强蓝光和UV上转换以及通过过度敏化(活性杂质)影响强烈的UV上转换发射中的作用。此外,还研究了有源和无源杂质掺杂对UCNPs的形态和光学性能的影响。证明了紫外发射UCNPs作为内部光源在干化学试纸中用于葡萄糖感测的适用性。这些测量与使用外部UV光源的基于反射率测量的传统方法一致。葡萄糖试纸条中使用UCNP提供了一种替代检测方法,其优点包括:控制信号可最大程度减少误差,以及近红外激发光通过血样的高穿透性,为设计光学装置提供了更大的自由度。在生物成像中,组织透明IR区域中UCNP的激发允许进行测量,这些测量没有背景荧光,并且具有很高的信噪比。此外,UCNP的窄发射带宽使多路检测成为可能。使用两种不同的UC发射颜色开发了孔中阵列免疫测定法。基于信号的位置和颜色,可以实现不同病毒感染之间的区分和抗体应答的分类。该研究证明了在基于成像的井阵列检测中光谱和空间多路复用的潜力。

著录项

  • 作者

    Kale Vishal;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号