...
首页> 外文期刊>Advanced Functional Materials >Photo-Triggered Shape Reconfiguration in Stretchable Reduced Graphene Oxide-Patterned Azobenzene-Functionalized Liquid Crystalline Polymer Networks
【24h】

Photo-Triggered Shape Reconfiguration in Stretchable Reduced Graphene Oxide-Patterned Azobenzene-Functionalized Liquid Crystalline Polymer Networks

机译:可伸缩的石墨烯氧化物图案偶氮苯官能化液晶高分子网络中的光触发形状重新配置

获取原文
获取原文并翻译 | 示例

摘要

In recent years, the "Kirigami" have been exploited to engineer stretchable electronics that exhibit enhanced deformability without sacrificing their mechanical and electrical properties. However, kirigami-inspired engineering is often limited to passive mechanical stretching for 3D shape morphing. To counter this problem, in this study, azobenzene-functionalized liquid crystalline polymer networks (azo-LCNs) are monolithically integrated with patterned reduced graphene oxide (rGO), called azo-LCN/rGO, to achieve on-demand shape reconfiguration in response to external stimuli (UV, NIR, solar rays, and portable light); in addition, the azo-LCN/rGO exhibit highly enhanced mechanical and electrical properties. The cross-sectional area and thickness of rGO patterns are controlled using a masking technique and evaporative self-assembly. By the spatial patterning of rGO, insulating azo-LCNs are converted into electrically conducting structures (381.9 S cm(-1)). The elastic modulus of 2 mu m thick azo-LCN can be tailored in the range of 1.3-6.4 GPa by integration with rGO layers of thickness less than 2 mu m. Upon UV irradiation, azo-LCN/rGO exhibit both for/backward in-plane bending as well as out-of-plane chiral twisting, thus overcoming the typical trade-off relationship between elastic modulus and deformability. Finally, an on-demand contactless shape reconfiguration in azo-LCN/rGO by UV irradiation in conjunction with passive mechanical strain is demonstrated.
机译:近年来,“Kirigami”已被利用到工程师可伸缩的电子设备,其表现出增强的可变形性,而不会牺牲其机械和电性能。然而,Kirigami灵感的工程通常限于3D形状的被动机械拉伸。为了反击该问题,在本研究中,偶氮苯官能化液晶聚合物网络(AZO-LCNS)是单片整体,与诸如偶氮-LCN / RGO的图案化的石墨烯(RGO)整体集成,以实现按需响应于外部刺激(UV,NIR,太阳光线和便携式光);此外,AZO-LCN / RGO表现出高度增强的机械和电气性能。使用掩模技术和蒸发自组装来控制RGO模式的横截面积和厚度。通过RGO的空间图案化,将绝缘偶氮-LCN转化为导电结构(381.9 scm(-1))。通过与厚度厚度小于2μm的RGO层,可以在1.3-6.4GPa的范围内定制弹性模量。在紫外线照射时,AZO-LCN / RGO展示用于/后置的面内弯曲以及面外手性扭曲,从而克服弹性模量和可变形性之间的典型折衷关系。最后,通过UV照射结合无源机械应变的UV照射中的按需接触形状重新配置。

著录项

  • 来源
    《Advanced Functional Materials 》 |2021年第31期| 2102106.1-2102106.13| 共13页
  • 作者单位

    Inha Univ Dept Polymer Sci & Engn 100 Inha Ro Incheon 22212 South Korea|Inha Univ Program Environm & Polymer Engn 100 Inha Ro Incheon 22212 South Korea;

    Inha Univ Dept Polymer Sci & Engn 100 Inha Ro Incheon 22212 South Korea|Inha Univ Program Environm & Polymer Engn 100 Inha Ro Incheon 22212 South Korea;

    Hanyang Univ Dept Organ & Nano Engn 222 Wangsimmni Ro Seoul 04763 South Korea|Hanyang Univ Human Tech Convergence Program 222 Wangsimmni Ro Seoul 04763 South Korea;

    Inha Univ Dept Polymer Sci & Engn 100 Inha Ro Incheon 22212 South Korea|Inha Univ Program Environm & Polymer Engn 100 Inha Ro Incheon 22212 South Korea;

    Korea Res Inst Chem Technol Adv Mat Div 141 Gajeong Ro Daejeon 34114 South Korea;

    Korea Res Inst Chem Technol Adv Mat Div 141 Gajeong Ro Daejeon 34114 South Korea;

    Hanyang Univ Dept Organ & Nano Engn 222 Wangsimmni Ro Seoul 04763 South Korea|Hanyang Univ Human Tech Convergence Program 222 Wangsimmni Ro Seoul 04763 South Korea;

    Inha Univ Dept Polymer Sci & Engn 100 Inha Ro Incheon 22212 South Korea|Inha Univ Program Environm & Polymer Engn 100 Inha Ro Incheon 22212 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    liquid crystalline polymer networks; nanocomposites; photomechanical actuations; reduced graphene oxides; stretchable electronics;

    机译:液晶聚合物网络;纳米复合材料;光学力学致动;减少石墨烯氧化物;可拉伸电子;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号