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多壁碳纳米管/m-aramid 复合薄膜作为电热元件的微观结构与性能。

Microstructure and performance of multiwalled carbon nanotube/m-aramid composite films as electric heating elements.

机构信息

Department of Advanced Organic Materials and Textile System Engineering, Chungnam National University, Daejeon 305-764, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2013 Jul 24;5(14):6527-34. doi: 10.1021/am400892k. Epub 2013 Jul 8.

Abstract

We report microstructure of thermomechanically stable multiwalled carbon nanotube (MWCNT)/poly(m-phenylene isophthalamide) (m-aramid) composite films containing 0.0-10.0 wt % MWCNTs and their performance as electric heating elements. FE-SEM images show that the MWCNTs are well dispersed in the composite films and are wrapped with m-aramid chains and that the interfacial thickness of m-aramid wrapped MWCNTs decreases with the MWCNT content. The electrical resistivity of films varies from ∼10(13) Ω cm for the neat m-aramid to ∼10(0) Ω cm of the film with 10.0 wt % MWCNT owing to the formation of a conductive three-dimensional network of MWCNTs. Accordingly, the performance of MWCNT/m-aramid films as electric heating elements is strongly dependent on MWCNT content as well as applied voltage. For the composite film with 10.0 wt % MWCNT, a maximum temperature of ∼176 °C is attained even at a low applied voltage of 10 V. The excellent performance such as rapid temperature response and high electric power efficiency at given applied voltages is found to be related with the microstructural features of the MWCNT/m-aramid films.

摘要

我们报告了热机械稳定的多壁碳纳米管(MWCNT)/聚间苯二甲酰间苯二胺(m-aramid)复合膜的微观结构,其中含有 0.0-10.0wt%的 MWCNT,并将其用作电热元件。FE-SEM 图像显示,MWCNT 在复合膜中得到了很好的分散,被 m-aramid 链包裹,并且被 m-aramid 包裹的 MWCNT 的界面厚度随 MWCNT 含量的增加而减小。由于 MWCNT 形成了三维导电网络,薄膜的电阻率从纯 m-aramid 的约 10(13)Ωcm 变化到 10.0wt%MWCNT 的薄膜的约 10(0)Ωcm。因此,MWCNT/m-aramid 薄膜作为电热元件的性能强烈依赖于 MWCNT 含量和施加的电压。对于含有 10.0wt%MWCNT 的复合膜,即使在 10V 的低施加电压下,也能达到约 176°C 的最高温度。在给定的施加电压下,具有快速温度响应和高电功率效率的优异性能与 MWCNT/m-aramid 薄膜的微观结构特征有关。

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