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Establishing Water-Soluble Layered WS_2 Nanosheet as a Platform for Biosensing

机译:建立水溶性分层WS_2纳米片作为生物传感平台

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Layered WS_2 nanosheet is a kind of two-dimensional (2D) covalent-network solid material with remarkable structural and electronic properties that has attracted increasing interest in recent years. In this work, we propose a one-step sonication-assisted exfoliation method to prepare water-soluble WS_2 nanosheet and demonstrate its application as a biosensing platform. The synthesis route is simple and straightforward. We reveal that single-strand DNA (ssDNA) chains can readily be adsorbed on the nanosheet, leading to complete and fast quenching of a fluorescent dye tagged to the DNA chain. The adsorbed ssDNA is detachable from the nanosheet upon the interaction with other biomolecules, resulting in the restoration of the fluorescence. The 2D WS_2 nanosheet thus acts as an efficient platform for assembling of bioprobes. Because of the extraordinarily high quenching efficiency, which is the synergic result of both excited-state energy transfer and static quenching, the WS_2 platform affords minimal background and high sensitivity. Our attempt will extend the application of this material to biosensing and probing areas.
机译:层状WS_2纳米片是一种具有显着结构和电子特性的二维(2D)共价网络固体材料,近年来引起了越来越多的关注。在这项工作中,我们提出了一种超声辅助剥离的一步法制备水溶性WS_2纳米片,并证明了其作为生物传感平台的应用。综合路线简单明了。我们发现单链DNA(ssDNA)链可以很容易地吸附在纳米片上,从而导致标记到DNA链的荧光染料的完全和快速淬灭。当与其他生物分子相互作用时,吸附的ssDNA可与纳米片分离,从而恢复荧光。因此,二维WS_2纳米片成为组装生物探针的有效平台。由于具有极高的猝灭效率,这是激发态能量转移和静态猝灭的协同结果,因此WS_2平台提供了最小的背景和高灵敏度。我们的尝试会将这种材料的应用范围扩展到生物传感和探测领域。

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