School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138 (USA).
Angew Chem Int Ed Engl. 2015 Feb 9;54(7):2160-4. doi: 10.1002/anie.201410788. Epub 2014 Dec 8.
Constructing and tuning self-organized three-dimensional (3D) superstructures with tailored functionality is crucial in the nanofabrication of smart molecular devices. Herein we fabricate a self-organized, phototunable 3D photonic superstructure from monodisperse droplets of one-dimensional cholesteric liquid crystal (CLC) containing a photosensitive chiral molecular switch with high helical twisting power. The droplets are obtained by a glass capillary microfluidic technique by dispersing into PVA solution that facilitates planar anchoring of the liquid-crystal molecules at the droplet surface, as confirmed by the observation of normal incidence selective circular polarized reflection in all directions from the core of individual droplet. Photoirradiation of the droplets furnishes dynamic reflection colors without thermal relaxation, whose wavelength can be tuned reversibly by variation of the irradiation time. The results provided clear evidence on the phototunable reflection in all directions.
构建和调整具有定制功能的自组织三维(3D)超结构对于智能分子器件的纳米制造至关重要。在这里,我们使用含有高螺旋扭曲力的光敏手性分子开关的一维胆甾相液晶(CLC)单分散液滴制造了自组织、光可调的 3D 光子超结构。通过玻璃毛细管微流控技术将液滴分散到 PVA 溶液中,获得液滴,这有利于在液滴表面实现液晶分子的平面锚定,从单个液滴的核心向各个方向观察到正常入射选择圆偏振反射证实了这一点。液滴的光辐照提供了无需热弛豫的动态反射颜色,其波长可以通过改变辐照时间来可逆地调节。结果提供了关于各向同性光可调反射的明确证据。