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Highly-sensitive mercury ion sensor based on DNA modified micro-nano fiber

机译:基于DNA修饰的微纳米纤维的高灵敏汞离子传感器

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Deoxyribonucleic acid (DNA) was modified on the surface of a non-adiabatic micro-nano fiber by electrostatic adsorption to detect the concentration of Hg2+ in water. Since Hg2+ specifically binds to DNA, the structure of DNA changes, and then the refractive index of fiber surface changes. Micro-nano fiber, which is very sensitive to the change of refractive index of solution, can convert the change of refractive index into the significant shift of interference wavelength. Therefore, by monitoring the shift of the resonance wavelength, the concentration of Hg2+ can be obtained. Such a combination can fully increase the detection sensitivity, which is 0.767nM/lgM in the range of 10-15-10-8M of Hg2+ concentration.
机译:通过静电吸附在非绝热微纳米纤维的表面修饰脱氧核糖核酸(DNA),以检测Hg的浓度 2 + 在水里。自汞 2 + 与DNA特异性结合后,DNA的结构发生变化,然后纤维表面的折射率发生变化。对溶液的折射率变化非常敏感的微纳米纤维可以将折射率的变化转化为干涉波长的明显变化。因此,通过监测共振波长的变化,可以检测出汞的浓度。 2 + 可以获得。这样的组合可以充分提高检测灵敏度,在10的范围内为0.767nM / lgM -15 -10 -8 汞汞 2 + 专注。

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