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Decyl Methacrylate-Based Microspot Optodes

机译:基于甲基丙烯酸癸酯的​​微点光电二极管

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Optode sensing membranes employing decyl methacrylate cross-linked with 1,6-hexanediol dimethacrylate as the polymer support were fabricated by a direct microspotting method on several surfaces. Photopolymerization was used to attach the microspots to the substrate. Using this method, diameters in the micrometer domain were obtained. Silanized glass, poly(methyl methacrylate) (PMMA), polycarbonate, and poly(dimethylsiloxane) were tested as possible substrates. Both polypropylene tips and the steel tips of drafting pens were used for spotting. It was determined that both silanized glass and PMMA gave working optodes, but the ones on PMMA did not fit the theoretical model. Diameters of 994 +- 80 and 1279 +- 85 (mu)m were obtained on silanized glass and PMMA, respectively, using the polypropylene tips for spotting. Different size optodes were fabricated using 0.35- and 0.50-mm steel drafting pen tips. The 0.35-mm tips produced diameters of 895 +- 26 and 688 +- 54 (mu)m on silanized glass and PMMA, respectively, and the 0.50-mm tips produced diameters of 1274 +- 94 (mu)m on silanized glass and 839 +- 28 (mu)m on PMMA. Thus, the microspot size can be controlled based on the hydrophobicity of the surface and the size of the tip used for spotting. Calibration plots of potassium optode microspots indicated that miniaturization does not alter response characteristics, such as selectivity, response time, and dynamic range, of the optodes.
机译:通过直接微点法在几个表面上制备了将甲基丙烯酸癸酯与1,6-己二醇二甲基丙烯酸酯交联的光敏传感膜作为聚合物载体。使用光聚合将微点附着到基底上。使用这种方法,获得了微米范围内的直径。测试了硅烷化玻璃,聚甲基丙烯酸甲酯(PMMA),聚碳酸酯和聚二甲基硅氧烷作为可能的基材。聚丙烯笔尖和绘图笔的钢笔尖都用于点样。可以确定,硅烷化玻璃和PMMA都能产生工作的光电二极管,但是PMMA上的光电二极管不符合理论模型。使用聚丙烯尖端点样,分别在硅烷化玻璃和PMMA上获得了994±80和1279±85μm的直径。使用0.35毫米和0.50毫米钢制绘图笔尖制造了不同尺寸的光电二极管。 0.35毫米的尖端在硅烷化玻璃和PMMA上产生的直径分别为895 +-26和688 +-54μm,0.50毫米的尖端在硅烷化玻璃和PMMA上产生的直径为1274 +-94μm。在PMMA上为839±28μm。因此,可以基于表面的疏水性和用于点样的尖端的大小来控制微点的大小。钾光电二极管微点的校准图表明,小型化不会改变光电二极管的响应特性,例如选择性,响应时间和动态范围。

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