Sang Jingxin, Zhou Xin, Xia Ziqi, Sun Jiatong, Wang Jianqiang, Shang Jianhua, Zhang Yihong, Zhao Shuguang, Neyts Kristiaan
College of Information Science and Technology, Donghua University, Shanghai 201620, China.
Liquid Crystals and Photonics Group, ELIS Department, Ghent University, Technologiepark 126, Ghent 9000, Belgium.
ACS Appl Mater Interfaces. 2023 Mar 1;15(8):11016-11023. doi: 10.1021/acsami.2c20987. Epub 2023 Jan 26.
The dispersion and tunable alignment of colloidal nanomaterials is desirable for practical applications in electric-optic (E-O) devices; however, it remains challenging for large one-dimensional nanomaterials with a large aspect ratio. Here, we demonstrate a large-scale, simple, multi-microdomain, and noncontact photoalignment technology to align colloidal silver nanowires (AgNWs, length ∼4.5 μm, diameter ∼70.6 nm) in a liquid crystal (LC) with a high two-dimensional order parameter (about 0.9). The AgNWs are precisely self-assembled via photomasks with twisted nematic and planar alignment models in microdomain regions. The AgNW orientation is tuned with an electric field, through the rotation of an LC director , which allows three-dimensional (3D) tunable orientation combined with photoalignment. The colloidal dispersions of AgNWs in the LC cell influenced the ion transfer, elastic constant, dielectric anisotropy, and near LC alignment, changing the E-O properties of the LC devices. The 3D tunable orientation of an AgNW by photoalignment and an electric field could provide a new way to assemble large colloidal nanomaterials and fabricate functional E-O devices.
胶体纳米材料的分散和可调取向对于电光(E-O)器件的实际应用是很有必要的;然而,对于具有大纵横比的大型一维纳米材料来说,这仍然具有挑战性。在这里,我们展示了一种大规模、简单、多微区且非接触的光取向技术,用于在液晶(LC)中以高二维有序参数(约0.9)排列胶体银纳米线(AgNWs,长度约4.5μm,直径约70.6nm)。AgNWs通过具有扭曲向列相和平面对取向模型的光掩模在微区区域精确地自组装。通过电场调节AgNW的取向,借助液晶指向矢的旋转,这实现了与光取向相结合的三维(3D)可调取向。AgNWs在LC盒中的胶体分散体影响了离子转移、弹性常数、介电各向异性以及近LC取向,改变了LC器件的E-O特性。通过光取向和电场对AgNW进行3D可调取向可为组装大型胶体纳米材料和制造功能性E-O器件提供一种新方法。