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Paper transistor made with regenerated cellulose and covalently bonded single-walled carbon nanotubes

机译:由再生纤维素和共价键合的单壁碳纳米管制成的纸晶体管

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We report a flexible paper transistor made with regenerated cellulose and covalently bonded single-walled carbon nanotubes. Functionalized single-walled carbon nanotubes (SWNTs) are reacted with N, TV-Carbonyldiimidazoles to obtain SWNTs-imidazolides. SWNTs can be covalently bonded to cellulose by acylation of cellulose with SWNTs-imidazolides. Using the product, SWNTs covalently bonded cellulose (S/C) composite paper is fabricated and it is mechanically stretched to align SWNTs with cellulose chains. Finally, inter-digital comb shaped source and drain electrode and bottom gate electrode is formed on the paper via lift-off process. Aligned SWNTs can contribute to establishing stable electron channel paths in the cellulose layer. The alignment of SWNTs can be key a role in improving characteristics of the paper transistor. The characteristics of the paper transistor are evaluated by measuring mobility, on-off ratio depending on the alignment of SWNTs in S/C composite paper transistors.
机译:我们报道了一种由再生纤维素和共价键合的单壁碳纳米管制成的柔性纸晶体管。使功能化的单壁碳纳米管(SWNT)与N,TV-羰基二咪唑反应,得到SWNT-咪唑化物。 SWNT可以通过将纤维素与SWNT-咪唑化物酰化而与纤维素共价键合。使用该产品,可以制造SWNTs共价键合的纤维素(S / C)复合纸,并对其进行机械拉伸以使SWNTs与纤维素链对齐。最后,通过剥离工艺在纸上形成叉指状梳状的源极和漏极以及底栅电极。对齐的SWNT可以有助于在纤维素层中建立稳定的电子通道路径。 SWNT的对准可能是改善纸晶体管特性的关键作用。通过测量迁移率,开关比取决于S / C复合纸晶体管中SWNT的排列,来评估纸晶体管的特性。

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