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Two-photon ratiometric sensing of Hg~(2+) by using cysteine functionalized Agnanoparticles

机译:双光子比率计传感Hg ~(2 +)通过使用半胱氨酸功能化Agnanoparticles

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We have demonstrated a novel two-photon sensing strategy to detect mercury ions with high selectivity and sensitivity. This sensing approach is based on the observation that addition of Hg~(2+) into a cysteine functionalized Ag nanoparticle solution could significantly enhance their two-photon emission. An enhancement factor of up to 100 fold was obtained when mercury was added. A detection limit of as low as 65 nM could be achieved. The sensitivity and sensing range can be easily tuned. Compared to the conventional colorimetric or extinction spectrum based methods, this scheme offers improved sensitivity, quantitative detection of Hg~(2+) with a larger dynamic range, and allows detection deep into biological environments such as cells and tissues where deep penetration is required. The sensitivity could be further improved by using two-photon microscopy with the additional advantages of 3D detection and mapping.
机译:我们演示了一种新颖的双光子感应策略检测汞离子的高选择性和灵敏度。方法是基于这样的观察:除了Hg ~(2 +)为半胱氨酸功能化Ag纳米颗粒可能的解决方案显著增强双光子发射。一个增强的因素的100倍当水星了。低至65海里能够达到极限。敏感性和传感范围很容易调优。或基于消光光谱的方法,这个方案提供了提高灵敏度,定量检测Hg ~(2 +)与一个更大的动态范围,并允许深入生物检测细胞和组织,深等环境渗透是必需的。利用双光子显微镜进一步提高有额外的3 d检测的优点和映射。

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