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首页> 外文期刊>American Journal of Analytical Chemistry >An Optical Sensor Based on Polyvinyl Benzyl Malonate Cross-Linked with Divinyl Benzene Dispersed in a Hydrogel Membrane for Detection of Some Heavy Metals
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An Optical Sensor Based on Polyvinyl Benzyl Malonate Cross-Linked with Divinyl Benzene Dispersed in a Hydrogel Membrane for Detection of Some Heavy Metals

机译:基于聚乙烯丙二酸苄酯与二乙烯基苯交联的分散在水凝胶膜中的光学传感器,用于检测一些重金属

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In previous work we have developed a dicarboxylate functionalized polymer that demonstrated chemical sensing. It showed good response to pH changes as well as to varying concentrations of copper and calcium ions. Our recent in-vest- tigations showed interesting results upon testing the functionalized sensing polymer on heavy metals. This sensor is composed of microspheres of polyvinyl benzyl malonate lightly-cross-linked with divinyl benzene dispersed in a hydrogel membrane. The response of the optical sensor is based on the interaction between the metal cations with the deprotonated functional group. The polymer, thus, undergoes shrinking as a result of neutralization of adjacent negative charges on the back-bone of the polymer. This causes significant changes in the optical properties of the sensing element. The optical changes were measured as absorbance vs. wavelength as the sensing membrane is exposed to solutions of varying concentrations of heavy metal ions. The sensor showed significant increase in absorbance up to a concentration of 5 × 10-3 M to the following metal ions: Ni2+, Zn2+, and Cd2+. Furthermore, the studied capacity of the derivatized microspheres showed close values to Ni2+, Zn2+, Cd2+ (1.20, 1.09, 1.08 mmol/g respectively). These kinds of properly functionalized polymers appear to be suitable, versatile sensing elements for the detection of low concentrations of heavy metal ions. In addition, all of the tested heavy metals showed a similar value of the equilibrium formation constant, (log Kf1 is 2.63). In contrast, the sensor showed no significant response to varying concentrations of K+ and Mg2+ metal ions.
机译:在以前的工作中,我们开发了具有化学感应力的二羧酸酯官能化聚合物。它对pH值变化以及铜和钙离子浓度的变化均显示出良好的响应。我们最近的研究表明,在重金属上对官能化传感聚合物进行测试后,得出了有趣的结果。该传感器由与分散在水凝胶膜中的二乙烯基苯轻度交联的聚乙烯基丙二酸苄酯微球组成。光学传感器的响应基于金属阳离子与去质子化的官能团之间的相互作用。因此,由于中和聚合物主链上相邻的负电荷,导致聚合物收缩。这导致感测元件的光学性质发生显着变化。当传感膜暴露于不同浓度的重金属离子溶液中时,光学变化以吸光度与波长的关系进行测量。传感器显示以下金属离子的吸收率显着提高,浓度达到5×10-3 M:Ni2 +,Zn2 +和Cd2 +。此外,研究的衍生微球的容量显示接近Ni2 +,Zn2 +,Cd2 +的值(分别为1.20、1.09、1.08 mmol / g)。这些类型的经过适当功能化的聚合物似乎是适合检测低浓度重金属离子的通用传感元件。此外,所有测试的重金属均显示出相似的平衡形成常数值(log Kf1为2.63)。相反,传感器对变化的K +和Mg2 +金属离子没有明显的响应。

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