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Printing materials in micro- and nano-scale: Systems for process control

机译:微米和纳米级印刷材料:过程控制系统

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Imprinting polymers is an outstandingly versatile and straightforward way for generating sensor materials. Combined with mass-sensitive devices they are e.g. also highly suitable for process control. We e.g. monitored the amount of methyl iodide above a reaction mixture of this compound and triethylamine. At the titration end point, the heatable QCM device indeed shows a significant frequency response to the reactant. When monitoring oxidative degradation processes in engine lubricants, applying MIP titanate nanoparticles leads to an increase in sensitivity by a factor of 2 compared to deposited thin films of the same material. With surface-imprinted polyurethanes, we succeeded in directly measuring insulin in aqueous solution over three orders of magnitude in concentration. Furthermore, fermenting yeast cells can directly be measured. To increase the reproducibility of the sensor signal, an artificial polymer stamp for preparing the MIPs is presented.
机译:压印聚合物是生成传感器材料的一种出色的通用性和直接性。与质量敏感设备结合使用时,例如也非常适合过程控制。我们例如监测该化合物和三乙胺的反应混合物上方的甲基碘的量。在滴定终点,可加热的QCM装置确实显示出对反应物的明显频率响应。当监测发动机润滑油中的氧化降解过程时,与相同材料的沉积薄膜相比,应用MIP钛酸酯纳米颗粒可使灵敏度提高2倍。使用表面压印聚氨酯,我们成功地直接测量了浓度超过三个数量级的水溶液中的胰岛素。此外,可以直接测量发酵酵母细胞。为了提高传感器信号的可重复性,提出了一种用于制备MIP的人造聚合物印章。

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