Sun Kai, Wang Linying, Wang Zongxiang, Wu Xinfeng, Fan Guohua, Wang Zhongyang, Cheng Chuanbing, Fan Runhua, Dong Mengyao, Guo Zhanhu
College of Ocean Science and Engineering, Shanghai Maritime University, Shanghai 201306, China.
Phys Chem Chem Phys. 2020 Mar 7;22(9):5114-5122. doi: 10.1039/c9cp06196g. Epub 2020 Feb 19.
Recently, flexible metacomposites with negative permittivity have triggered extensive interest owing largely to their promising applications in areas such as sensors, cloaking, and wearable and flexible electronic devices. In this paper, flexible silver nanowire/carbon fiber felt (AgNW/CFF) metacomposites with weakly negative permittivity were fabricated by adjusting their composition and microstructure. Along with the formation of a conductive AgNW network, the resulting composites gradually presented metal-like behavior. Interestingly, weakly negative permittivity with a small absolute value (as low as about 6.4) and good flexibility were observed in the composites with 3.7 wt% AgNWs. The one-dimensional silver nanowires contribute to reducing the overall electron density of the resulting composites, which is responsible for the weakly negative permittivity. As the AgNWs increased, the Drude-like negative permittivity got stronger owing to the enhancement of the electron density. Further investigation from the perspective of microelectronics revealed that the negative permittivity is dependent on the inductive characteristic. The proposed design strategy for AgNW/CFF composites with tunable negative permittivity opens up a new approach to flexible metacomposites.
最近,具有负介电常数的柔性超材料复合材料引发了广泛关注,这主要归功于它们在传感器、隐身、可穿戴和柔性电子设备等领域的潜在应用。本文通过调整其组成和微观结构,制备了具有弱负介电常数的柔性银纳米线/碳纤维毡(AgNW/CFF)超材料复合材料。随着导电银纳米线网络的形成,所得复合材料逐渐呈现出类似金属的行为。有趣的是,在含有3.7 wt%银纳米线的复合材料中观察到了绝对值较小的弱负介电常数(低至约6.4)以及良好的柔韧性。一维银纳米线有助于降低所得复合材料的整体电子密度,这是产生弱负介电常数的原因。随着银纳米线含量的增加,由于电子密度的增强,类德鲁德负介电常数变得更强。从微电子学角度的进一步研究表明负介电常数取决于电感特性。所提出的具有可调负介电常数的AgNW/CFF复合材料的设计策略为柔性超材料复合材料开辟了一条新途径。