Jia Song-Lin, Geng Hong-Zhang, Wang Luda, Tian Ying, Xu Chun-Xia, Shi Pei-Pei, Gu Ze-Zeng, Yuan Xue-Shuang, Jing Li-Chao, Guo Zhi-Ying, Kong Jing
State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Key Laboratory of Advanced Fibers and Energy Storage, School of Material Science and Engineering, Tianjin Polytechnic University, Tianjin 300387, People's Republic of China.
Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
R Soc Open Sci. 2018 Jun 6;5(6):172072. doi: 10.1098/rsos.172072. eCollection 2018 Jun.
High-performance, flexible film heaters with carbon nanotube transparent conducting films are easily fabricated by both a rod-coating method and a spraying method. The main conclusion we have reached is that the film demonstrates a heating rate of 6.1°C s at 35 V and sheet resistance as low as 94.7 sq with 72.04% optical transmittance at a wavelength of 550 nm by the spraying method after a series of post-treatment processes with acid and distilled water. Then, we adopt a mathematical method of nonlinear fitting to simulate the collected experimental data and the functions effectively. Furthermore, through analysis of the formula, the correlation between temperature and time is well explained. Therefore, carbon nanotube-based, flexible, transparent heaters exhibit high electrothermal performance and are expected to find different applications, e.g. various functional devices such as heating materials, heatable smart windows or dining tables.
采用棒涂法和喷涂法都能轻松制备出带有碳纳米管透明导电膜的高性能柔性薄膜加热器。我们得出的主要结论是,通过喷涂法,经过一系列用酸和蒸馏水的后处理工艺后,该薄膜在35V时的加热速率为6.1°C/s,方阻低至94.7Ω/sq,在550nm波长处的透光率为72.04%。然后,我们采用非线性拟合的数学方法对收集到的实验数据和函数进行有效模拟。此外,通过对公式的分析,很好地解释了温度与时间之间的相关性。因此,基于碳纳米管的柔性透明加热器具有很高的电热性能,有望找到不同的应用,例如各种功能器件,如加热材料、可加热智能窗户或餐桌等。