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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Low-angle-dependent CdS@SiO(2)photonic crystal hydrogel material for visual detection and removal of uranyl ions
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Low-angle-dependent CdS@SiO(2)photonic crystal hydrogel material for visual detection and removal of uranyl ions

机译:低角度依赖性Cds / SiO(2)光子晶体水凝胶材料,用于视觉检测和除去铀酰离子

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摘要

A low-angle-dependent photonic crystal hydrogel (LAD-PCH) material was developed to simultaneously detect and remove uranyl ions (UO22+). Different from traditional SiO(2)photonic crystal hydrogel with the problem of angle dependency, the LAD-PCH material overcomes the restriction of observation direction. The LAD-PCH is a composite material with the photonic crystal array of 180-nm monodisperse CdS@SiO(2)particles embedded into the functional hydrogel. As one UO(2)(2+)can bind to multiple carboxyl groups and amide groups, the functional hydrogel fabricated by acrylic acid and acrylamide will shrink after chelating. These changes in the hydrogel volume alter the array spacing and trigger a blue shift of diffraction wavelength and naked-eye visual color changes of LAD-PCH. The color can vary from orange-red to orange, yellow, green, and cyan, corresponding to the determination range of 100 pM-100 mu M. The LAD-PCH material detects UO(2)(2+)sensitively as the lowest detectable concentration is about 100 pM, and removes UO(2)(2+)high-efficiently as the maximum adsorption capacity of U(VI) is about 1010 mg g(-1)at 298 K. This LAD-PCH material is convenient and has potential to simultaneously monitor and remove UO(2)(2+)from uranium-polluted water.
机译:开发出低角度依赖性光子晶体水凝胶(Lad-PCH)材料以同时检测和除去甲烷基离子(UO 2 2 +)。不同于传统的SiO(2)光子晶体水凝胶,具有角度依赖性的问题,LAD-PCH材料克服了观察方向的限制。 LAD-PCH是一种复合材料,其具有180nm单分散CDS的光子晶体阵列,嵌入功能水凝胶中的SiO(2)颗粒。由于一个UO(2)(2+)可以与多个羧基和酰胺基团结合,所以通过丙烯酸和丙烯酰胺制造的功能水凝胶将在螯合后缩小。水凝胶体积的这些变化改变了阵列间隔,并触发Lad-PCH的衍射波长和裸眼视觉颜色变化的蓝色偏移。颜色可从橙红色到橙色,黄色,绿色和青色,对应于100 pm-100 mu m的确定范围。Lad-pch材料敏感地检测UO(2)(2+)作为最低可检测的浓度约为100μm,并在298k下以约1010mg g(-1)约1010mg g(-1),从而高效地除去UO(2)(2+)。该LAD-PCH材料是方便的有可能同时监测和移除来自铀污染水的UO(2)(2+)。

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