State Key Laboratory of Chemical Resource Engineering, China and College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Nanoscale. 2019 Dec 28;11(48):23197-23205. doi: 10.1039/c9nr07816a. Epub 2019 Nov 29.
Chirality and chiral materials demonstrate ever-growing importance. As a new type of chiral material, chiral polymer particles hold huge potential in both scientific research and practical applications. Meanwhile, nonspherical polymer particles (NPPs) have witnessed substantial progress in recent years because of their unique structures and especially the properties distinguishable from the corresponding spherical particles. We hypothesize that combining chirality with NPPs will open up an unprecedented category of advanced materials. The present contribution reports the first protocol for preparing electrosprayed nonspherical chiral particles constructed from chiral helical polymers, using helical substituted polyacetylenes as the model. SEM images demonstrate the successful fabrication of nonspherical chiral particles with tunable morphologies (bowl-, golf- and apple-like particles). Circular dichroism (CD) measurement proves the remarkable optical activity of the particles, which is observed in the predominantly one-handed helical polymer chains. The present work establishes a novel, versatile, and powerful platform for preparing nonspherical chiral polymer particles with controllable morphology.
手性和手性材料的重要性日益凸显。作为一种新型手性材料,手性聚合物粒子在科学研究和实际应用中具有巨大的潜力。同时,近年来,由于其独特的结构,尤其是与相应的球形粒子不同的性质,非球形聚合物粒子(NPPs)取得了显著的进展。我们假设将手性与 NPPs 结合起来,将开辟出一类前所未有的先进材料。本研究首次报道了用电喷雾法制备由手性螺旋聚合物构建的非球形手性粒子的方案,以螺旋取代的聚乙炔作为模型。SEM 图像表明成功制备了具有可调形态(碗状、高尔夫球状和苹果状粒子)的非球形手性粒子。圆二色性(CD)测量证明了粒子具有显著的光学活性,这在手性聚合物链主要为单链螺旋时可以观察到。本工作为制备具有可控形态的非球形手性聚合物粒子建立了一种新颖、通用和强大的平台。