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Sensing Using Rare-Earth-Doped Upconversion Nanoparticles

机译:稀土掺杂上转换纳米粒子的传感

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Optical sensing plays an important role in theranostics due to its capability to detect hint biochemical entities or molecular targets as well as to precisely monitor specific fundamental psychological processes. Rare-earth (RE) doped upconversion nanoparticles (UCNPs) are promising for these endeavors due to their unique frequency converting capability; they emit efficient and sharp visible or ultraviolet (UV) luminescence via use of ladder-like energy levels of RE ions when excited at near infrared (NIR) light that are silent to tissues. These features allow not only a high penetration depth in biological tissues but also a high detection sensitivity. Indeed, the energy transfer between UCNPs and biomolecular or chemical indicators provide opportunities for high-sensitive bio- and chemical-sensing. A temperature-sensitive change of the intensity ratio between two close UC bands promises them for use in temperature mapping of a single living cell. In this work, we review recent investigations on using UCNPs for the detection of biomolecules (avidin, ATP, etc.), ions (cyanide, mecury, etc.), small gas molecules (oxygen, carbon dioxide, ammonia, etc.), as well as for in vitro temperature sensing. We also briefly summarize chemical methods in synthesizing UCNPs of high efficiency that are important for the detection limit.
机译:光学传感在诊断学中起着重要的作用,因为它具有检测提示生化实体或分子靶标以及精确监视特定基本心理过程的能力。稀土(RE)掺杂的上转换纳米颗粒(UCNPs)因其独特的频率转换能力而有望用于这些领域。当在对组织无声的近红外(NIR)光激发时,它们通过使用阶梯状的RE离子能级,发出高效且清晰的可见或紫外(UV)发光。这些特征不仅允许在生物组织中的高穿透深度,而且还具有高检测灵敏度。实际上,UCNP与生物分子或化学指示剂之间的能量转移为高度敏感的生物和化学感应提供了机会。对两个接近的UC波段之间的强度比进行温度敏感的变化,有望将其用于单个活细胞的温度映射。在这项工作中,我们回顾了有关使用UCNPs检测生物分子(抗生物素蛋白,ATP等),离子(氰化物,汞等),小气体分子(氧气,二氧化碳,氨气等)的最新研究,以及用于体外温度感测。我们还简要概述了合成高效UCNP的化学方法,这些方法对于检测限非常重要。

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