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Chalcogen and Pnictogen Bonding-Modulated Multiple-Constituent Chiral Self-Assemblies. | LitMetric

Chalcogen and Pnictogen Bonding-Modulated Multiple-Constituent Chiral Self-Assemblies.

ACS Nano

Key Laboratory of Colloid and Interface Chemistry of Ministry of Education and School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, People's Republic of China.

Published: November 2023

AI Article Synopsis

  • - This research explores how chalcogen and pnictogen-based σ-hole interactions can manipulate supramolecular chirality, achieving impressive results in a system with multiple constituents.
  • - Using phenyl phosphonium-selenium conjugates and deprotonated amino acids, the study demonstrated a transformation from achiral membranes to chiral helical nanotubes, highlighting how these bonds induce chiral properties.
  • - The findings also revealed that these interactions led to complex chiral assemblies with unique optical activities, thereby broadening the potential for creating and fine-tuning chiral materials using elements from Groups VA and VIA of the periodic table.

Article Abstract

Chalcogen and pnictogen-based σ-hole interactions have shown limited applications in controlling supramolecular chirality. In this work, we employed chalcogen and pnictogen bonding to control supramolecular chirality in a multiple-constituent system with modulate chiral optics. Phenyl phosphonium-selenium conjugates with electrophilic σ-hole regions were allowed to coassemble with the π-conjugated deprotonated amino acids. Control experimental and computational results evidenced that the chalcogen and pnictogen bonding formed with carboxylates induced morphological transformation from achiral membranes to chiral helical nanotubes with emerging supramolecular chirality. Also, the chiral helical architectures accomplished inverted handedness and chiroptical activities, including circular dichroism and circularly polarized luminescence. Finally, synergistic chalcogen and pnictogen bonding was employed to stabilize the charge-transfer complexation to afford ternary chiral co-assemblies with evolved chiral optics and luminescence. This work, showing the role of chalcogen and pnictogen bonding in manipulating supramolecular chirality and optics, will expand the toolbox in the fabrication and property-tuning of chiral materials containing elements of Group VA and VIA.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acsnano.3c08590DOI Listing

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