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Enhancement of electro-optical properties in holographic polymer-dispersed liquid crystal films by incorporation of multiwalled carbon nanotubes into a polyurethane acrylate matrix

机译:通过将多壁碳纳米管掺入聚氨酯丙烯酸酯基体中来增强全息聚合物分散液晶膜中的电光性能

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摘要

Holographic polymer-dispersed liquid crystal (HPDLC) films were fabricated with varying amounts of multiwalled carbon nanotubes (MWCNTs) to optimize the electro-optical performance of the HPDLC films. The MWCNTs were well dispersed in the prepolymer mixture up to 0.5 wt%, implying that polyurethane acrylate (PUA) oligomer chains wrap the MWCNTs along their length, resulting in high diffraction efficiency and good phase separation. The hardness and elastic modulus of the polymer matrix were enhanced with increasing amounts of MWCNTs because of the reinforcement effect of the MWCNTs with intrinsically good mechanical properties. The increased elasticity of the PUA matrix and the immiscibility between the matrix and the liquid crystals (LCs) gradually increased the diffraction efficiency of the HPDLC films. However, the diffraction efficiency of HPDLC films with more than 0.05 wt% MWCNTs was reduced, caused by poor phase separation between the matrix and LCs because of the high viscosity of the reactive mixture. HPDLC films showing a low driving voltage (<3 V μm~(-1)), a fast response time (<10 ms) and a high diffraction efficiency (>75%) could be obtained with 0.05 wt% MWCNTs at 40 wt% LCs.
机译:用不同数量的多壁碳纳米管(MWCNT)制备了全息聚合物分散液晶(HPDLC)膜,以优化HPDLC膜的电光性能。 MWCNTs可以很好地分散在预聚物混合物中,最多达0.5 wt%,这意味着聚氨酯丙烯酸酯(PUA)低聚物链沿其长度包裹了MWCNTs,从而实现了高衍射效率和良好的相分离。聚合物基体的硬度和弹性模量随着MWCNT数量的增加而提高,这是因为具有本质上良好的机械性能的MWCNT的增强作用。 PUA基质的增加的弹性以及基质与液晶(LC)之间的不溶性逐渐增加了HPDLC膜的衍射效率。然而,由于反应混合物的高粘度,由于基质和LC之间的相分离差,导致MWCNTs含量超过0.05 wt%的HPDLC膜的衍射效率降低。在40 wt%的条件下,以0.05 wt%的MWCNTs可以得到显示低驱动电压(<3 Vμm〜(-1)),快速响应时间(<10 ms)和高衍射效率(> 75%)的HPDLC膜。 LC。

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