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Structurally Colored Thiol Chitosan Thin Films as a Platform for Aqueous Heavy Metal Ion Detection

机译:结构着色的硫醇壳聚糖薄膜作为重金属离子水溶液检测的平台

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摘要

Thin films of the polysaccharide chitosan and several chitosan derivatives,including conjugates of L-cysteine,thioglycolic acid,and 2-iminothiolane,were produced from dilute acidic solutions.Attempts to produce a fourth conjugate using lipoic acid resulted in the synthesis of partially N-acetylated chitosan ethanoate.These biopolymer films were exposed to solutions containing 50 ppm concentrations of various metal ion and counterion analytes.Analyte-induced changes in film thicknesses and refractive indices were measured using a spectroscopic ellipsometer,and shifts in film color were quantified using a reflectance spectrometer.The modified chitosans were generally more sensitive to change in response to pure water but also showed varied response to several ions of interest,including Cr(III)and Cr(VI),Hg(II),Ni(II),and others.The potential for tuning film response was demonstrated by varying the concentration of sulfur groups in the thioglycolic acid conjugate,leading to increased specificity for Hg(II).
机译:由稀酸溶液制备了多糖壳聚糖和几种壳聚糖衍生物的薄膜,包括L-半胱氨酸,巯基乙酸和2-亚氨基硫杂环戊烷的结合物。尝试使用硫辛酸生产第四个结合物导致部分N将这些生物聚合物薄膜暴露于含有50 ppm浓度的各种金属离子和抗衡离子分析物的溶液中,使用分光镜椭圆仪测量分析物引起的薄膜厚度和折射率的变化,并使用反射率对薄膜颜色的变化进行定量改性壳聚糖通常对纯水的响应更敏感,但对几种感兴趣的离子(包括Cr(III)和Cr(VI),Hg(II),Ni(II)等)表现出不同的响应通过改变巯基乙酸共轭物中硫基的浓度来证明调节膜响应的潜力,从而导致规格增加汞(II)的显着性。

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