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Sensory Polymeric Foams as a Tool for Improving Sensing Performance of Sensory Polymers

机译:感官聚合物泡沫作为改善感官聚合物传感性能的工具

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摘要

Microcellular sensory polymers prepared from solid sensory polymeric films were tested in an aqueous Hg(II) detection process to analyze their sensory behavior. First, solid acrylic-based polymeric films of 100 µm thickness were obtained via radical copolymerization process. Secondly, dithizone sensoring motifs were anchored in a simple five-step route, obtaining handleable colorimetric sensory films. To create the microporous structure, films were foamed in a ScCO2 batch process, carried out at 350 bar and 60 °C, resulting in homogeneous morphologies with cell sizes around 5 µm. The comparative behavior of the solid and foamed sensory films was tested in the detection of mercury in pure water media at 2.2 pH, resulting in a reduction of the response time (RT) around 25% and limits of detection and quantification (LOD and LOQ) four times lower when using foamed films, due to the increase of the specific surface associated to the microcellular structure.
机译:由固体感官聚合物薄膜制备的微细胞感官聚合物在Hg(II)水溶液检测过程中进行测试,以分析其感官行为。首先,通过自由基共聚工艺获得了厚度为100 µm的丙烯酸类固体聚合物薄膜。其次,在一个简单的五步路线中锚定了双硫zone传感图案,从而获得了可处理的比色传感膜。为了形成微孔结构,在Scbar的批处理过程中在350 bar和60°C的温度下对膜进行发泡,以产生均匀的形态,孔尺寸约为5 µm。在2.2 pH的纯净水介质中检测汞时,测试了固体和泡沫感官薄膜的对比性能,从而将响应时间(RT)降低了约25%,并降低了检测和定量极限(LOD和LOQ)使用泡沫薄膜时,由于与微孔结构相关的比表面积增加,因此降低了四倍。

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