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Ultrathin transition-metal dichalcogenide nanosheet-based colorimetric sensor for sensitive and label-free detection of DNA

机译:超薄过渡金属二甲基化物纳米片的比色传感器用于无敏感和无标签检测DNA

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Two-dimensional transition-metal dichalcogenide (TMD) nanosheets have been regarded as a class of promising nanomaterials in various applications due to their outstanding optical, electronic, and catalytic properties. Here, we explored the metal ion-induced optical behavior of four typical TMD nanosheets (WS2, MoS2, WSe2, and MoSe2) prepared via a kitchen blender-assisted shear exfoliation method. Results show that upon the addition of certain amount of metal ions, layered 2H phase TMD nanosheets would aggregate rapidly, resulting in their growth in both planar size and thickness, which leads to the change of their characteristic absorption peak position. Inspired by this phenomenon, a sensitive and label-free colorimetric sensing strategy for DNA detection was develop combined with the discriminative affinity of TMD nanosheets towards single-strand DNA and double-strand DNA. Furthermore, hybridization chain reaction is introduced to achieve higher sensitivity towards DNA detection. We anticipate that this proposed colorimetric sensor would significantly expand the scope of 2D TMD nanosheets and hold great application prospects in DNA sensing strategies in various fields.
机译:由于其出色的光学,电子和催化性能,二维过渡金属二甲烷(TMD)纳米甲醚(TMD)纳米片已被视为各种应用中的一类有前途的纳米材料。在这里,我们探讨了通过厨房搅拌器辅助剪切剥离方法制备的四种典型TMD纳米片(WS2,MOS2,WSE2和MOSE2)的金属离子诱导的光学行为。结果表明,在添加一定量的金属离子后,层状的2H相TMD纳米片将迅速聚集,导致平面尺寸和厚度的生长,这导致其特征吸收峰位置的变化。通过这种现象的启发,可以将用于DNA检测的敏感和无标记的比色感测策略与TMD纳米片朝向单链DNA和双链DNA的辨别性亲和力组合。此外,引入杂交链反应以实现对DNA检测的更高敏感性。我们预计这一提议的比色传感器将大大扩大2D TMD纳米片的范围,并在各个领域的DNA传感策略中保持良好的应用前景。

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