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Fluorescent and colorimetric magnetic microspheres as nanosensors for Hg~(2+) in aqueous solution prepared by a sol-gel grafting reaction and host-guest interaction

机译:荧光比色磁性微球作为纳米传感器Hg ~(2 +)的水溶液通过溶胶-凝胶法接枝反应和准备主-客体相互作用

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摘要

Fluorescent sensing TSRh6G-3-cyclodextrin fluorophore/adamantane-modified inclusion complex magnetic nanoparticles (TFIC MNPs) have been synthesized via the cooperation of a host-guest interaction and sol-gel grafting reaction. Powder X-ray diffraction, transmission electron microscopy, Fourier transform infrared spectroscopy, and UV-visible absorption and emission spectroscopy have been employed to characterize the material. Fluorescence and UV-visible spectra have shown that the resultant multifunctional nanoparticle sensors exhibit selective 'turn-on' type fluorescent enhancements and a clear color change from light brown to pink with Hg~(2+). Owing to a larger surface area and high permeability, TFIC MNPs exhibit remarkable selectivity and sensitivity for Hg~(2+), and its detection limit measures up to the micromolar level in aqueous solution. Most importantly, magnetic measurements have shown that TFIC magnetic nanoparticles are superparamagnetic and they can be separated and collected easily using a commercial magnet. These results not only solve the limitations in practical sensing applications of nanosensors, but also enable the fabrication of other multifunctional nanostructure-based hybrid nanomaterials.
机译:荧光传感TSRh6G-3-cyclodextrin荧光团/ adamantane-modified包含复杂磁性纳米颗粒(TFIC基于)合成通过主客体的合作交互和溶胶-凝胶法接枝反应。x射线衍射,透射电子傅里叶变换红外显微镜光谱和紫外可见吸收发射光谱学已经采用这种材料的特点。紫外可见光谱表明,合成多功能纳米颗粒传感器表现出选择性的刺激类型荧光增强和一个明确的颜色从浅棕色变成粉红色Hg ~(2 +)。高渗透性,TFIC基于表现出显著的选择性和灵敏度Hg ~(2 +),和它的检测到微摩尔的限制措施在水溶液。磁性测量显示TFIC磁性纳米粒子超顺磁的和他们可以被分离和收集容易使用一个商业磁铁。限制在实际传感应用纳米传感器,但也使制造其他的多功能nanostructure-based混合纳米材料。

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