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Thiourea functionalized hydrogel photonic crystal sensor for Cd~(2+) detection

机译:硫脲功能化水凝胶光子晶体传感器用于Cd〜(2+)检测

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摘要

A new hydrogel photonic crystal (HPC) sensor utilizing thiourea as the recognition group for cadmium cation detection was developed. The sensor was fabricated by infiltrating a 3D contact polystyrene photonic crystal template with precursor solution of acrylamide, l-allyl-2-thiourea and N,N'-methylenebisacrylamide, followed by a thermal polymerization using ammonium persulfate as initiator at room temperature. The resulting HPC sensor with periodic opal structure changed its volume and Bragg diffraction wavelength in response to the difference of the Cd~(2+) concentration. Shifts of diffraction peak were observed by using a fiber optic spectrometer and the measurements showed a function relationship between the blue-shift and aqueous Cd~(2+) concentrations in the range of 0.01 mmol L~(-1) to 10 mmol L~(-1) in a pH 4 buffer solution. The functionalized thiourea groups allowed HPC to recognize the analyte Cd~(2+) with high specificity. The maximum blue-shift reached 47 nm responding to Cd~(2+) but no significant shift responding to Zn~(2+) and Hg~(2+). The HPC sensor could be used to quantitatively determine Cd~(2+) concentrations in complex solutions such as natural water.
机译:开发了一种以硫脲为镉阳离子检测识别基团的新型水凝胶光子晶体(HPC)传感器。通过将3D接触式聚苯乙烯光子晶体模板浸入丙烯酰胺,1-烯丙基-2-硫脲和N,N'-亚甲基双丙烯酰胺的前体溶液中,然后在室温下使用过硫酸铵作为引发剂进行热聚合,来制造传感器。得到的具有周期性蛋白石结构的HPC传感器响应Cd〜(2+)浓度的差异而改变了其体积和布拉格衍射波长。用光纤分光光度计观察到衍射峰的位移,测量结果表明蓝移与Cd〜(2+)水溶液浓度在0.01 mmol L〜(-1)至10 mmol L〜之间呈函数关系。 (-1)在pH 4的缓冲溶液中。官能化的硫脲基团使HPC能够以高特异性识别被分析物Cd〜(2+)。响应Cd〜(2+)的最大蓝移达到47 nm,但是响应Zn〜(2+)和Hg〜(2+)的最大蓝移没有明显变化。 HPC传感器可用于定量测定复杂溶液(例如天然水)中的Cd〜(2+)浓度。

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