School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, 200240, P.R. China.
Present address: School of Chemical Science and Engineering, Tongji University, 1239 Siping Road, Shanghai, China, 200092, P.R. China.
Angew Chem Int Ed Engl. 2017 Jul 17;56(30):8657-8662. doi: 10.1002/anie.201701994. Epub 2017 Jun 14.
Physical fabrication of chiral metallic films usually results in singular or large-sized chirality, restricting the optical asymmetric responses to long electromagnetic wavelengths. The chiral molecule-induced formation of silver films prepared chemically on a copper substrate through a redox reaction is presented. Three levels of chirality were identified: primary twisted nanoflakes with atomic crystal lattices, secondary helical stacking of these nanoflakes to form nanoplates, and tertiary micrometer-sized circinates consisting of chiral arranged nanoplates. The chiral Ag films exhibited multiple plasmonic absorption- and scattering-based optical activities at UV/Vis wavelengths based on their hierarchical chirality. The Ag films showed chiral selectivity for amino acids in catalytic electrochemical reactions, which originated from their primary atomic crystal lattices.
手性金属薄膜的物理制备通常会导致单一或大型手性,限制了光学非对称响应到长电磁波长。本文通过氧化还原反应在铜衬底上化学制备银薄膜,展示了手性分子诱导的形成。确定了三个层次的手性:具有原子晶格的初级扭曲纳米薄片,这些纳米薄片的二级螺旋堆积形成纳米板,以及由手性排列的纳米板组成的三级微米级卷曲。基于其分级手性,手性 Ag 薄膜在 UV/Vis 波长下表现出多种基于等离子体吸收和散射的光学活性。Ag 薄膜在电催化反应中对氨基酸表现出手性选择性,这源于其初级原子晶格。