Guo Zhijiang, Li Xiaoli, Li Ning, Liu Xuanji, Hao Longhui, Wang Yuxuan, Deng Wei, Bai Haoxuan, Liang Jianguo, Chen Zhanchun
College of Mechanical and Vehicle Engineering.Taiyuan University of Technology, Taiyuan 030024, China.
Beijing University of Chemical Technology, 100029, China.
Phys Chem Chem Phys. 2024 Jan 31;26(5):4524-4532. doi: 10.1039/d3cp05506j.
Currently, electromagnetic shielding materials need to meet the characteristics of lightweight, high transmittance, and robust conductivity. Silver nanowires (AgNWs) have progressively found applications in recent years owing to their excellent aspect ratio, conductivity, and flexibility. The properties of AgNWs vary with different aspect ratios, and the length and diameter of AgNWs often exert diverse influences on the photoelectric properties of conductive films. In this study, we combined AgNWs with hydroxypropyl methylcellulose (HPMC) and employed a directional stacking arrangement method to apply AgNWs onto the PET substrate, investigating the properties of four distinct aspect ratios of AgNWs (1000, 750, 625, and 531). Ultimately, the prepared four films achieved electromagnetic shielding capabilities ranging from 26.6 dB to 32.8 dB, with a transmittance range of 89.8% to 94.6%, showing excellent electromagnetic shielding properties. Moreover, the prepared films showed an exceedingly low roughness value (RMS = 7.07 nm), remarkable flexibility, and superior oxidation resistance with the facilitation of HPMC. The films also showed exceptional electrothermal conversion prowess, achieving saturation temperature within a mere 8 seconds, thereby displaying a rapid thermal response. Furthermore, when a voltage of 4 V was applied, the temperature of the thin film remained essentially constant for a duration of 2500 seconds, highlighting its admirable thermal stability, which is of great significance for the development of flexible and transparent electromagnetic shielding materials in the future.
目前,电磁屏蔽材料需要具备轻质、高透光率和良好导电性的特性。近年来,银纳米线(AgNWs)因其优异的长径比、导电性和柔韧性而逐渐得到应用。AgNWs的性能随长径比的不同而变化,其长度和直径常常对导电薄膜的光电性能产生不同影响。在本研究中,我们将AgNWs与羟丙基甲基纤维素(HPMC)相结合,并采用定向堆叠排列方法将AgNWs应用于PET基材上,研究了四种不同长径比(1000、750、625和531)的AgNWs的性能。最终,制备的四种薄膜实现了26.6 dB至32.8 dB的电磁屏蔽能力,透光率范围为89.8%至94.6%,展现出优异的电磁屏蔽性能。此外,在HPMC的作用下,制备的薄膜显示出极低的粗糙度值(RMS = 7.07 nm)、卓越的柔韧性和出色的抗氧化性。这些薄膜还表现出非凡的电热转换能力,仅在8秒内就能达到饱和温度,从而显示出快速的热响应。此外,当施加4 V电压时,薄膜温度在2500秒内基本保持恒定,突出了其令人钦佩的热稳定性,这对未来柔性透明电磁屏蔽材料的发展具有重要意义。