脱氧核酶
铀酰
检出限
等离子体子
拉曼散射
纳米线
化学
离子
适体
纳米技术
劈理(地质)
拉曼光谱
材料科学
光电子学
光学
色谱法
物理
有机化学
复合材料
生物
遗传学
断裂(地质)
作者
Raekeun Gwak,Hongki Kim,Seung Min Yoo,Sang Yup Lee,Jun Young Lee,Min Ku Lee,Chang Kyu Rhee,Taejoon Kang,Bongsoo Kim
摘要
Abstract Uranium is an essential raw material in nuclear energy generation; however, its use raises concerns about the possibility of severe damage to human health and the natural environment. In this work, we report an ultrasensitive uranyl ion (UO 2 2+ ) detection method in natural water that uses a plasmonic nanowire interstice (PNI) sensor combined with a DNAzyme-cleaved reaction. UO 2 2+ induces the cleavage of DNAzymes into enzyme strands and released strands, which include Raman-active molecules. A PNI sensor can capture the released strands, providing strong surface-enhanced Raman scattering signal. The combination of a PNI sensor and a DNAzyme-cleaved reaction significantly improves the UO 2 2+ detection performance, resulting in a detection limit of 1 pM and high selectivity. More importantly, the PNI sensor operates perfectly, even in UO 2 2+ -contaminated natural water samples. This suggests the potential usefulness of a PNI sensor in practical UO 2 2+ -sensing applications. We anticipate that diverse toxic metal ions can be detected by applying various ion-specific DNA-based ligands to PNI sensors.
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