Centre of Molecular Materials for Photonics and Electronics, Department of Engineering, University of Cambridge, 9 JJ Thomson Avenue, Cambridge CB3 0FA, UK.
Nat Mater. 2012 May 13;11(7):599-603. doi: 10.1038/nmat3330.
A promising approach to the fabrication of materials with nanoscale features is the transfer of liquid-crystalline structure to polymers. However, this has not been achieved in systems with full three-dimensional periodicity. Here we demonstrate the fabrication of self-assembled three-dimensional nanostructures by polymer templating blue phase I, a chiral liquid crystal with cubic symmetry. Blue phase I was photopolymerized and the remaining liquid crystal removed to create a porous free-standing cast, which retains the chiral three-dimensional structure of the blue phase, yet contains no chiral additive molecules. The cast may in turn be used as a hard template for the fabrication of new materials. By refilling the cast with an achiral nematic liquid crystal, we created templated blue phases that have unprecedented thermal stability in the range -125 to 125 °C, and that act as both mirrorless lasers and switchable electro-optic devices. Blue-phase templated materials will facilitate advances in device architectures for photonics applications in particular.
制备具有纳米级特征的材料的一种很有前途的方法是将液晶结构转移到聚合物中。然而,在具有全三维周期性的系统中尚未实现这一点。在这里,我们通过聚合物模板法制备了自组装的三维纳米结构,所采用的模板是具有立方对称性的手性蓝相 I 液晶。将蓝相 I 光聚合,并去除剩余的液晶,从而得到多孔的独立浇铸体,它保留了蓝相的手性三维结构,但不含手性添加剂分子。该铸体可以反过来用作制造新材料的硬模板。通过用各向同性向列液晶重新填充铸体,我们制造了具有前所未有的热稳定性(-125 至 125°C)的模板化蓝相,其可充当无镜激光器和可切换电光器件。蓝相模板材料将特别有助于推进光子学应用的器件架构方面的进展。