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Enantioselective photoinduced cyclodimerization of a prochiral anthracene derivative adsorbed on helical metal nanostructures. | LitMetric

Enantioselective photoinduced cyclodimerization of a prochiral anthracene derivative adsorbed on helical metal nanostructures.

Nat Chem

Department of Physics, Institute of Advanced Materials, State Key Laboratory of Environmental and Biological Analysis, Golden Meditech Centre for NeuroRegeneration Sciences, Hong Kong Baptist University (HKBU), Hong Kong SAR, China.

Published: June 2020

AI Article Synopsis

  • The study explores how to create molecular chirality without needing a chiral inductor, which is important for understanding homochirality.
  • It demonstrates that the direction of helical metal nanostructures influences the chirality of adsorbed molecules, specifically 2-anthracenecarboxylic acid, leading to the formation of different cyclodimers based on the handedness of the nanohelices.
  • The findings are supported by density functional theory calculations that suggest the enantioselectivity is due to specific spatial arrangements on the helical surfaces and may be affected by chiroplasmonic effects.

Article Abstract

The generation of molecular chirality in the absence of any molecular chiral inductor is challenging and of fundamental interest for developing a better understanding of homochirality. Here, we show the manipulation of molecular chirality through control of the handedness of helical metal nanostructures (referred to as nanohelices) that are produced by glancing angle deposition onto a substrate that rotates in either a clockwise or counterclockwise direction. A prochiral molecule, 2-anthracenecarboxylic acid, is stereoselectively adsorbed on the metal nanohelices as enantiomorphous anti-head-to-head dimers. The dimers show either Si-Si or Re-Re facial stacking depending on the handedness of the nanohelices, which results in a specific enantiopreference during their photoinduced cyclodimerization: a left-handed nanohelix leads to the formation of (+)-cyclodimers, whereas a right-handed one gives (-)-cyclodimers. Density functional theory calculations, in good agreement with the experimental results, point to the enantioselectivity mainly arising from the selective spatial matching of either Si-Si or Re-Re facial stacking at the helical surface; it may also be influenced by chiroplasmonic effects.

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Source
http://dx.doi.org/10.1038/s41557-020-0453-0DOI Listing

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