具有频率响应特性的掺杂 MWCNT 反向模式聚合物网络液晶

Jiajun Li, Dongchao Ji, Zhibo Zhang, Yanan Yang, Ruicong Zhang, Tianyu Wang, Yumin Zhang, Wenxin Cao, Jiaqi Zhu
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摘要

聚合物液晶(PLC)是一种常见的智能窗户材料。然而,PLC 智能窗通常需要较高的驱动电压才能保持透明度。在这项工作中,我们通过在反向模式聚合物网络液晶(R-PNLC)中掺杂多壁碳纳米管(MWCNT)合成了一种新型 PLC 智能薄膜。研究发现,掺杂 MWCNT 能有效地将 R-PNLC 的阈值电压(V th)从 19.0V 降低到 8.4V。由于 MWCNT 和 LC 分子之间的共取向,掺杂的 R-PNLC 能够在没有外加电场的情况下保持较高的可见光透过率(约 80%)。我们发现,掺杂 MWCNT 可以改变 R-PNLC 的频率调制特性。掺杂的 R-PNLC 显示出更宽的频率调制范围,最高可达 40,000 Hz,而未掺杂的 R-PNLC 的频率调制在 23,000 Hz 时达到饱和。我们还测试了 R-PNLC 的电磁干扰(EMI)屏蔽效率,发现只需在系统中掺入 0.01wt% 的 MWCNT,就能提高 EMI 屏蔽效率。掺入 0.01wt% MWCNT 的 R-PNLC 在 5.38 GHz-8.17 GHz 频段内的总屏蔽效能 (SET) 值高达 14.91 dB。这项研究表明,这些薄膜可用于具有增强电磁屏蔽能力的低能耗智能窗户。
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MWCNT Doped Reverse-Mode Polymer Network Liquid Crystals with Frequency Response Property
Polymer-liquid crystals (PLC) is a common material for smart windows. However, PLC smart windows usually require high driving voltage to maintain transparency. In this work, we synthesized a novel PLC smart film by doping multi-wall carbon nanotubes (MWCNT) into a reverse-mode polymer network liquid crystal (R-PNLC). It was found that doping MWCNT could effectively reduce the threshold voltage (V th) of R-PNLC from 19.0V to 8.4V. Due to co-orientation between MWCNT and LC molecules, the doped R-PNLC was able to maintain a high transmittance of visible light (~80%) without an applied electric field. We found that doping MWCNT could change the frequency modulation property of R-PNLC. The doped R-PNLC exhibits a wider frequency modulation range up to 40,000Hz, while the frequency modulation of the undoped R-PNLC reached to a saturation at 23,000 Hz. We also tested the electromagnetic interference (EMI) shielding efficiency of R-PNLC and found that the EMI shielding efficiency could be improved by doping only 0.01wt% MWCNT into the system. The total shielding effectiveness (SET) value of 0.01wt% MWCNT doped R-PNLC was up to 14.91 dB during frequency band of 5.38 GHz-8.17 GHz. This study demonstrates that the films are potentially useful for low-energy-consumption smart windows with enhanced electromagnetic shielding capability.
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