论文标题
量化手性Au纳米棒的螺旋形态
Quantification of the helical morphology of chiral Au nanorods
论文作者
论文摘要
无机纳米颗粒和纳米结构中的手性增强了科学的兴趣,因为有可能调整其与左手和右圆形极化光不同的相互作用的能力。在某些情况下,假设光活性源于纳米材料的手性形态。但是,量化数十纳米大小的物体中的手性程度远非直接。电子断层扫描提供了忠实地检索纳米材料的三维形态的可能性,但到目前为止,只有对手性纳米颗粒形态的定性解释才有可能。我们在此介绍一种方法,使我们能够根据螺旋的几何特性来量化复杂的手性纳米材料的螺旋。我们证明,在单个粒子水平上进行的分析可以提供对洗手体特性的起源的重要见解。
Chirality in inorganic nanoparticles and nanostructures has gained increasing scientific interest, because of the possibility to tune their ability to interact differently with left- and right-handed circularly polarized light. In some cases, the optical activity is hypothesized to originate from a chiral morphology of the nanomaterial. However, quantifying the degree of chirality in objects with sizes of tens of nanometers is far from straightforward. Electron tomography offers the possibility to faithfully retrieve the three-dimensional morphology of nanomaterials, but only a qualitative interpretation of the morphology of chiral nanoparticles has been possible so far. We introduce herein a methodology that enables us to quantify the helicity of complex chiral nanomaterials, based on the geometrical properties of a helix. We demonstrate that an analysis at the single particle level can provide significant insights into the origin of chiroptical properties.