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Multi-walled carbon nanotubes covalently bonded Cellulose Composite for Chemical Vapor Sensor

机译:用于化学蒸汽传感器的多壁碳纳米管共价键合纤维素复合材料

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A cellulose solution was prepared by dissolving cotton pulp in LiCl/ N,N-Dimethylacetamide (DMAc) solution, and functionalized multi-walled carbon nanotubes (MWCNTs) were reacted with N, N-Carbonyldiimidazoles to obtain MWCNTs-imidazolides. By acylation of cellulose with MWCNTs-imidazolides, MWCNTs were covalently bonded with cellulose chains. Using the product, MWCNTs covalently bonded cellulose composite (M/C) composite was fabricated with mechanical stretching to align MWCNTs with cellulose. Finally, inter-digital comb electrode was formed on the composite via lift-off process. Chemo-electrical properties of the M/C composite in response of absorption of the volatile vapors corresponding to 1-propanol, 1-butanol, methanol and ethanol were investigated. Due to sensitive and reversible expansion/contraction of the M/C composite matrix in response to absorption of each analyte, the M/C composite showed fast and reversible change in chemo-electrical property. The ranking of relative resistance response of the composite was methanol < ethanol < 1-propanol < 1-butanol.
机译:通过将棉浆溶解在LiCl / N中制备纤维素溶液,N,N-二甲基乙酰胺(DMAc)溶液,然后将功能化的多壁碳纳米管(MWCNT)与N,N-羰基二咪唑反应,得到MWCNTs-咪唑化物。通过将纤维素与MWCNTs-咪唑化物酰化,MWCNTs与纤维素链共价键合。使用该产品,通过机械拉伸制备了MWCNTs共价键合的纤维素复合材料(M / C)复合材料,以使MWCNTs与纤维素对齐。最后,通过剥离工艺在复合材料上形成叉指梳状电极。研究了相应于1-丙醇,1-丁醇,甲醇和乙醇的挥发性蒸气的吸收,M / C复合材料的化学电学性质。由于响应于每种分析物的吸收,M / C复合材料基质敏感且可逆地膨胀/收缩,因此M / C复合材料在化学电特性方面显示出快速且可逆的变化。复合材料的相对电阻响应的等级为甲醇<乙醇<1-丙醇<1-丁醇。

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