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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >High-resolution inkjet printing of conductive carbon nanotube twin lines utilizing evaporation-driven self-assembly
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High-resolution inkjet printing of conductive carbon nanotube twin lines utilizing evaporation-driven self-assembly

机译:利用蒸发驱动自组装的导电碳纳米管双线高分辨率喷墨印刷

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We report about the inkjet printing of multi-walled carbon nanotubes (MWCNTs) for conductive tracks. The MWCNTs were grown by chemical vapor deposition allowing a defined length and diameter. An inkjet-printable ink formulation was prepared by dispersing the MWCNTs in water. Inkjet-printed high resolution patterns were obtained by printing the prepared ink formulation on silicon wafers utilizing evaporation-driven self-assembly processes. After the deposition of the ink, the solvent evaporation induces material flows within the liquid moving the MWCNTs preferably to the edges of the printed patterns as well as to the print starting position where they assemble. Atomic force microscopy (AFM) reveals a preferential orientation of the deposited MWCNTs. The resulting deposit pattern is well-known as coffee-ring effect which is used here to enable high resolution printing and self-ordering of the MWCNTs. Depending on different print parameters such as drop spacing or substrate temperature, conductive track widths in the range of 5-15 mu m were achieved with a electrical resistivity of about 3.9.10(-3) to 5.6.10(-3) Omega.m measured by current-sensitive AFM. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们报告了用于导电轨迹的多壁碳纳米管(MWCNT)的喷墨印刷。通过化学气相沉积来生长MWCNT,从而允许限定的长度和直径。通过将MWCNT分散在水中来制备可喷墨印刷的油墨配方。通过使用蒸发驱动的自组装工艺将制得的油墨配方印刷在硅片上来获得喷墨印刷的高分辨率图案。在墨水沉积之后,溶剂蒸发引起材料在液体中流动,从而使MWCNTs优选移动到印刷图案的边缘以及它们聚集的印刷起始位置。原子力显微镜(AFM)揭示了沉积的MWCNT的优先取向。产生的沉积图案是众所周知的咖啡环效应,在此用于实现高分辨率打印和MWCNT的自排序。根据不同的印刷参数,例如墨滴间距或基材温度,可以实现5-15微米范围内的导电迹线宽度,电阻率约为3.9.10(-3)至5.6.10(-3)Ω。 m由电流敏感型AFM测量。 (C)2015 Elsevier Ltd.保留所有权利。

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