论文标题
底物上风车超级晶格的手性组件
Chiral Assemblies of Pinwheel Superlattices on Substrates
论文作者
论文摘要
手性超晶格的独特拓扑和物理学使他们从纳米颗粒的自组装成为(元)材料的圣杯。在这里,我们表明,四面体金纳米颗粒可以自发地从钙钛矿样低密度相转化,并带有角对角连接到带有角对边缘连接和较密集的齿轮组件。尽管手动措施证明,虽然拐角共享的组件是精力充沛的,但风车超级晶格在固体底物上具有强烈的镜像。液相透射电子显微镜和计算模型表明,纳米颗粒之间的范德华和静电相互作用控制热力学平衡。四面体之间的可变角到边缘连接可以对手性进行微调。双层超晶格的结构域显示了通过光子诱导的近场电子显微镜和有限差分的时间域模拟确定的强大手势活动。底物支持的手性超晶格的简单性和多功能性促进了具有异常光学,机械和电子特性的元结构涂层的生产。
The unique topology and physics of chiral superlattices make their self-assembly from nanoparticles a holy grail for (meta)materials. Here we show that tetrahedral gold nanoparticles can spontaneously transform from a perovskite-like low-density phase with corner-to-corner connections into pinwheel assemblies with corner-to-edge connections and denser packing. While the corner-sharing assemblies are achiral, pinwheel superlattices become strongly mirror-asymmetric on solid substrates as demonstrated by chirality measures. Liquid-phase transmission electron microscopy and computational models show that van der Waals and electrostatic interactions between nanoparticles control thermodynamic equilibrium. Variable corner-to-edge connections among tetrahedra enable fine-tuning of chirality. The domains of the bilayer superlattices display strong chiroptical activity identified by photon-induced near-field electron microscopy and finite-difference time-domain simulations. The simplicity and versatility of the substrate-supported chiral superlattices facilitate manufacturing of metastructured coatings with unusual optical, mechanical and electronic characteristics.