首页> 外文会议>Symposium EE on Nano- and Microscale Materials—Mechanical Properties and Behavior under Extreme Environments >Conducting Polymer nanoComposites (CPC): Nanocharacterisation of layer by layer sprayed PMMA-CNT vapour sensors by Atomic force Microscopy in current Sensing Mode (CS-AFM)
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Conducting Polymer nanoComposites (CPC): Nanocharacterisation of layer by layer sprayed PMMA-CNT vapour sensors by Atomic force Microscopy in current Sensing Mode (CS-AFM)

机译:通过层喷涂PMMA-CNT蒸气传感器进行聚合物纳米复合材料(CPC):通过电流传感模式(CS-AFM)的原子力显微镜通过层喷涂的PMMA-CNT蒸气传感器进行纳米色谱

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Organic vapour sensors based on poly (methylmethacrylate)-multi-wall carbon nanotubes (PMMA-CNT) conductive polymer nanocomposite (CPC) were developed via layer by layer technique by spray deposition. CPC Sensors were exposed to three different classes of solvents (chloroform, methanol and water) and their chemo-electrical properties were followed as a function of CNT content in dynamic mode. Detection time was found to be shorter than that necessary for full recovery of initial state. CNT real three dimensional networks have been visualized by Atomic force microscopy in a field assisted intermittent contact mode. More interestingly real conductive network system and electrical ability of CPC have been explored by current-sensing atomic force microscopy (CS-AFM). Realistic effect of voltage on electrical conductivity has been found linear.
机译:基于聚(甲基丙烯酸甲酯)-Multi-壁碳纳米管(PMMA-CNT)导电聚合物纳米复合物(CPC)的有机蒸气传感器通过喷射沉积通过层技术通过层进行。将CPC传感器暴露于三种不同类别的溶剂(氯仿,甲醇和水),并且它们以动态模式的CNT含量遵循它们的化学电性能。发现检测时间比初始状态完全恢复所需的时间短。 CNT真正的三维网络已经通过原子力显微镜在现场辅助间歇接触模式中可视化。通过电流感测原子力显微镜(CS-AFM)探索了更有趣的实际导电网络系统和CPC的电力。已发现电压对电导率的逼真效果。

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