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Study on the Sensing Signal Profiles for Determination of Process Window of Flexible Sensors Based on Surface Treated PDMS/CNT Composite Patches

机译:基于表面处理过的PDMS / CNT复合贴片的柔性传感器过程窗口确定的传感信号曲线研究

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摘要

In this study, analysis of sensing signal profiles was conducted focusing on the close relationship between electrical conductivity and signal intensity in surface treated poly(dimethylsiloxane)/carbon nanotube (PDMS/CNT) composite patches for the purpose of their practical application as flexible chemical sensors. The flexible PDMS/CNT composite patches were prepared from a PDMS/CNT mixture with a two-roll apparatus. It was found that the PDMS/CNT pads showed a high electrical conductivity (10−1 S/m) even at low CNT loading (0.6 wt %) and a contact angle range of 105–118°. The surface of the obtained PDMS/CNT composite patches was treated using a simple bio-conjugation method to incorporate beta-cyclodextrin (beta-CD) molecules onto the surface as a sensing medium, in order to detect a model compound (Methyl Paraben, MePRB). FT-IR spectra indicated that beta-cyclodextrin molecules were effectively introduced on the surface of the PDMS/CNT patches. It was shown that the sensor signal intensity was substantially dependent on the base current value, which increased with increasing CNT loading. Accordingly, the base current value was intimately associated with the electrical conductivity of the composite patches. On the other hand, the increase in current over the base current (ΔI/I0) obtained after the addition of the model compound was inversely proportional to the CNT content. In this way, analysis on the sensing signal profiles of the flexible chemical sensor system was conducted to determine a process window. This study is a very useful springboard for future research activities, as more profound studies are necessary to fully understand sensing signal profiles.
机译:在这项研究中,对传感信号曲线进行了分析,着眼于表面处理过的聚(二甲基硅氧烷)/碳纳米管(PDMS / CNT)复合贴片中电导率和信号强度之间的紧密关系,旨在将其实际用作柔性化学传感器。 。用两辊设备由PDMS / CNT混合物制备柔性PDMS / CNT复合贴剂。结果发现,即使在低CNT负载(0.6 wt%)和105-118°接触角范围内,PDMS / CNT焊盘也显示出高电导率(10 -1 S / m)。使用简单的生物缀合方法处理获得的PDMS / CNT复合贴剂的表面,以将β-环糊精(β-CD)分子作为传感介质掺入表面,以检测模型化合物(对羟基苯甲酸甲酯(Meparaparaben),MePRB )。 FT-IR光谱表明,β-环糊精分子被有效地引入PDMS / CNT贴剂的表面。结果表明,传感器信号强度基本上取决于基本电流值,该基本电流值随CNT负载的增加而增加。因此,基本电流值与复合贴片的电导率紧密相关。另一方面,在添加模型化合物之后,电流相对于基础电流(ΔI/ I0)的增加与CNT含量成反比。以这种方式,对柔性化学传感器系统的感测信号轮廓进行分析以确定过程窗口。这项研究对于将来的研究活动是非常有用的跳板,因为需要进行更深入的研究才能完全理解传感信号曲线。

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