4.8 Article

Chiral Helices Formation by Self-Assembled Molecules on Semiconductor Flexible Substrates

期刊

ACS NANO
卷 16, 期 2, 页码 2901-2909

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.1c09982

关键词

nanoplatelets; curling; nanomechanic; ligands; diffraction

资金

  1. European Research Council (ERC) under the European Union [853049, 756225]

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This study investigates the self-assembly of organic ligands on the top and bottom basal planes of II-VI semiconductor nanoplatelets, inducing them to curl into helices. The radii and chirality of these helices can be controlled by the ligands' anchoring group and chain length.
The crystal structure of atomically defined colloidal II-VI semiconductor nanoplatelets (NPLs) induces the self-assembly of organic ligands over thousands of square nanometers on the top and bottom basal planes of these anisotropic nanoparticles. NPLs curl into helices under the influence of the surface stress induced by these ligands. We demonstrate the control of the radii of NPL helices through the ligands described as an anchoring group and an aliphatic chain of a given length. A mechanical model accounting for the misfit strain between the inorganic core and the surface ligands predicts the helices' radii. We show how the chirality of the helices can be tuned by the ligands anchoring group and inverted from one population to another.

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