Department of Advanced Organic Materials and Textile System Engineering, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 305-764, Republic of Korea.
Department of Advanced Organic Materials and Textile System Engineering, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 305-764, Republic of Korea.
Carbohydr Polym. 2015 Nov 20;133:456-63. doi: 10.1016/j.carbpol.2015.06.053. Epub 2015 Jul 8.
We have manufactured regenerated cellulose-based composite films reinforced with pristine multiwalled carbon nanotube (MWCNT) by a facile casting of cellulose/DMAc/LiCl solutions containing 0.2-10.0wt% MWCNT and have investigated their application as electric heating materials by examining microstructure, thermal stability, and electrical properties. TEM images showed that the pristine MWCNT was dispersed well in the regenerated cellulose matrix. The composite films were found to be stable thermally up to ∼275°C. The electrical resistivity of the regenerated cellulose/MWCNT composite films decreased significantly from ∼10(9)Ωcm to ∼10(1)Ωcm with increasing the MWCNT loading, particularly at a certain MWCNT content between 2.0 and 3.0wt%. Accordingly, the composite films with 5.0-10.0wt% MWCNT contents, which possessed low electrical resistivity of ∼10(2)-10(1)Ωcm, exhibited excellent electric heating performance in aspects of temperature responsiveness, steady-state maximum temperature, and electrical energy efficiency at constant applied voltages. For instance, the composite film with 10.0wt% MWCNT had well-controlled steady-state maximum temperatures of 40-189°C at 20-80V, characteristic temperature growth constant of ∼1s, and electric power efficiency of ∼5.4mW/°C, which performance remained unchanged under repeated experiments for several hours.
我们通过简便的纤维素/DMAc/LiCl 溶液浇铸制造了再生纤维素基复合膜,其中含有 0.2-10.0wt%的原始多壁碳纳米管 (MWCNT),并用其作为电加热材料进行了研究,考察了其微观结构、热稳定性和电性能。TEM 图像表明原始 MWCNT 在再生纤维素基体中分散良好。复合膜在约 275°C 下表现出良好的热稳定性。随着 MWCNT 负载量的增加,再生纤维素/MWCNT 复合膜的电阻率从约 10(9)Ωcm 显著降低至约 10(1)Ωcm,尤其是在 2.0-3.0wt%之间的特定 MWCNT 含量下。因此,具有 5.0-10.0wt%MWCNT 含量的复合膜具有较低的电阻率(约为 10(2)-10(1)Ωcm),在恒压应用下,表现出优异的电加热性能,包括温度响应、稳态最大温度和电能效率。例如,在 20-80V 下,具有 10.0wt%MWCNT 的复合膜具有良好的控制的稳态最大温度 40-189°C、特征温度增长常数约 1s 和电功率效率约 5.4mW/°C,在数小时的重复实验中性能保持不变。