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首页> 外文期刊>Journal of materials science >Electrical conductivity and Vickers hardness enhancement by pristine and functionalized MWCNTs incorporation in polycaprolactam matrix
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Electrical conductivity and Vickers hardness enhancement by pristine and functionalized MWCNTs incorporation in polycaprolactam matrix

机译:通过在聚己内酰胺基体中掺入原始碳和功能化的MWCNT来提高电导率和维氏硬度

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摘要

Several electronic applications have been developed through the use of carbon nanotubes and polymer composites. Multiwalled carbon nanotubes (MWCNTs), functionalized and pristine, were incorporated in polycaprolactam matrix; hydrochloric acid (19 and 38%) and formic acid (88%) were used as polymer solvents. Mechanical stirring method was employed to dissolve the polymer and achieve the dispersion of MWCNTs in polymer matrix. The obtained composites were characterized by scanning electron microscopy, confirming the presence of MWCNTs in polymer. Raman and Fourier transformed infrared spectra were used to identify the interaction between MWCNTs and polycaprolactam. Hardness improvements were proved through microhardness test, reaching values over 100 Hv units. The electrical conductivity in composites with the highest MWCNTs content (4 wt%) was confirmed. The results described in this manuscript confirm the possibility to develop a new material using MWCNTs dispersion in polycaprolactam matrix and possible applications in electronical and mechanical fields.
机译:通过使用碳纳米管和聚合物复合材料,已经开发了几种电子应用。将功能化和原始的多壁碳纳米管(MWCNT)掺入聚己内酰胺基质中;盐酸(19%和38%)和甲酸(88%)用作聚合物溶剂。采用机械搅拌法使聚合物溶解并实现多壁碳纳米管在聚合物基体中的分散。通过扫描电子显微镜对获得的复合材料进行表征,证实了聚合物中存在MWCNT。拉曼光谱和傅立叶变换的红外光谱用于鉴定多壁碳纳米管和聚己内酰胺之间的相互作用。通过显微硬度测试证明了硬度的提高,达到了超过100 Hv单位的值。证实了具有最高MWCNTs含量(4wt%)的复合材料的电导率。该手稿中描述的结果证实了使用聚己内酰胺基体中的MWCNT分散体开发新材料的可能性以及在电子和机械领域的可能应用。

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