Tertiary Chiral Nanostructures from C-H⋅⋅⋅F Directed Assembly of Chiroptical Superatoms.
Hui ShenZhen XuLingzheng WangYing-Zi HanXianhu LiuSami MalolaBoon K TeoHannu HäkkinenNan-Feng ZhengPublished in: Angewandte Chemie (International ed. in English) (2021)
We report the synthesis and structure of tertiary chiral nanostructures with 100 % optical purity. A novel synthetic strategy, using chiral reducing agent, R and S-BINAPCuBH4 (BINAP is 2,2'-Bis(diphenylphosphino)-1,1'-binaphthyl), is developed to access to atomically precise, intrinsically chiral [Au7 Ag6 Cu2 (R- or S-BINAP)3 (SCH2 Ph)6 ]SbF6 nanoclusters in one-pot synthesis. The clusters represent the first tri-metallic superatoms with inherent chirality and fair stability. Both metal distribution (primary) and ligand arrangement (secondary) of the enantiomers exhibited perfect mirror images, and unprecedentedly, the self-assembly driven by the C-H⋅⋅⋅F interaction between the phenyl groups of the superatom moieties and SbF6 - anions induced the formation of bio-mimic left- and right-handed helices, achieving the tertiary chiral nanostructures. DFT calculations revealed the connections between the molecular details and chiral optical activity.
Keyphrases
- ionic liquid
- capillary electrophoresis
- mass spectrometry
- high resolution
- density functional theory
- sensitive detection
- deep learning
- optical coherence tomography
- molecular dynamics
- machine learning
- single cell
- high speed
- molecular docking
- quantum dots
- gold nanoparticles
- convolutional neural network
- endothelial cells
- drug induced