首页> 外文会议>Focused session on geopolymers and other inorganic polymers >FABRICATION AND ELECTRICAL PROPERTIES OF CUP-STACKED CARBON NANOTUBES/POLYMER NANOCOMPOSITE FILMS AS AN ELECTRODE SENSOR FOR BRAIN-WAVE DETECTION
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FABRICATION AND ELECTRICAL PROPERTIES OF CUP-STACKED CARBON NANOTUBES/POLYMER NANOCOMPOSITE FILMS AS AN ELECTRODE SENSOR FOR BRAIN-WAVE DETECTION

机译:杯堆叠碳纳米管/聚合物纳米复合膜的制造和电性能作为脑波检测电极传感器

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Polymer-based composites films with cup-stacked carbon nanotubes (CSCNTs) are fabricated with objectives to enhance the electrical sensitivities to detect brain-waves without disturbing electroencephalography- computed tomography (EEG-CT) imaging. CSCNTs are homogeneously dispersed in pre-polymer of polysiloxane using a high speed mixer at rotation speed of 1500rpm for 1h after ultrasonic treatment for 30 min. The pre-polymer suspension including CSCNTs fillers was casted on the polyimide spacer and underwent air removal by vacuum treatment, and dried for 2h at 80°C to confirm complete curing. The electrical resistivity of the composites was evaluated by using four point probe method. The cross-section of the sample was observed by SEM microscope and digital microscope. The artifact effect of the composite films under X-ray environment was evaluated by X-ray CT scanning. Effects of solvent and vacuum treatment are performed during fabrication in order to motivate denser packing of the nano inclusions reducing inter-phase gaps in the matrix. X-ray transmission, electric resistivity and pressure sensitiveness are analyzed for evaluation of the internal structure variation and enhancement of physical properties of the composites. Analysis shows that the composite films enhance the X-ray transmission as well as high electrical conductivity without harmful effects to human body, which makes CSCNTs hybrid film as a promising material for EEG-CT recording system.
机译:基于聚合物基复合材料,其具有杯堆叠碳纳米管(CSCNT),其目的是为了增强电感敏感性,以检测脑波的脑波,而不会干扰脑电图层析术(EEG-CT)成像。在超声处理后,使用高速混合器在超声波处理后1小时均匀地分散在聚硅氧烷的预聚物中,在超声波处理后30分钟。将包括CSCNTS填料的预聚物悬浮液浇铸在聚酰亚胺间隔物上并通过真空处理进行空气去除,并在80℃下干燥2小时以确认完全固化。通过使用四点探针方法评价复合材料的电阻率。通过SEM显微镜和数字显微镜观察样品的横截面。通过X射线CT扫描评估X射线环境下复合膜的伪影效应。在制造期间进行溶剂和真空处理的影响,以便激活纳米夹杂物的密集包装减少基质中的相互间隙。分析X射线透射,电阻率和压力敏感性,以评估内部结构变化和复合材料的物理性质的增强。分析表明,复合膜增强了X射线传输以及对人体而没有有害影响的高电导率,这使得CSCNTS混合膜作为EEG-CT记录系统的有希望的材料。

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