Department of Applied Physics , Aalto University School of Science , FI-00076 Aalto , Finland.
Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB21EW , U.K.
ACS Nano. 2018 Apr 24;12(4):3149-3158. doi: 10.1021/acsnano.7b09070. Epub 2018 Mar 15.
Block copolymer micelles (BCMs) are self-assembled nanoparticles in solution with a collapsed core and a brush-like stabilizing corona typically in the size range of tens of nanometers. Despite being widely studied in various fields of science and technology, their ability to form structural colors at visible wavelength has not received attention, mainly due to the stringent length requirements of photonic lattices. Here, we describe the precision assembly of BCMs with superstretched corona, yet with narrow size distribution to qualify as building blocks for tunable and reversible micellar photonic fluids (MPFs) and micellar photonic crystals (MPCs). The BCMs form free-flowing MPFs with an average interparticle distance of 150-300 nm as defined by electrosteric repulsion arising from the highly charged and stretched corona. Under quiescent conditions, millimeter-sized MPCs with classical FCC lattice grow within the photonic fluid-medium upon refinement of the positional order of the BCMs. We discuss the generic properties of MPCs with special emphasis on surprisingly narrow reflected wavelengths with full width at half-maximum (fwhm) as small as 1 nm. We expect this concept to open a generic and facile way for self-assembled tunable micellar photonic structures.
嵌段共聚物胶束 (BCMs) 是在溶液中自组装的纳米颗粒,具有坍塌的核心和刷状的稳定冠,通常尺寸在几十纳米范围内。尽管在科学和技术的各个领域得到了广泛的研究,但它们在可见光波长下形成结构色的能力尚未得到关注,主要是由于光子晶格的严格长度要求。在这里,我们描述了具有超拉伸冠的 BCM 的精密组装,但其尺寸分布较窄,可作为可调谐和可逆胶束光子流体 (MPF) 和胶束光子晶体 (MPC) 的构建块。BCMs 形成具有 150-300nm 平均粒子间距离的自由流动的 MPF,这是由高度带电和拉伸的冠产生的静电排斥引起的。在静止条件下,在 BCMs 的位置顺序细化后,在光子流体介质内生长出具有经典 FCC 晶格的毫米级 MPC。我们讨论了 MPC 的一般性质,特别强调了反射波长非常窄,半峰全宽 (fwhm) 小至 1nm。我们期望这个概念为自组装可调谐胶束光子结构开辟一种通用且简便的方法。