4.8 Article

Chiral templating of self-assembling nanostructures by circularly polarized light

Journal

NATURE MATERIALS
Volume 14, Issue 1, Pages 66-72

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NMAT4125

Keywords

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Funding

  1. Center for Solar and Thermal Energy Conversion
  2. Energy Frontier Research Center - US Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-SC0000957]
  3. ARO MURI 'Coherent Effects in Hybrid Nanostructures for Lineshape Engineering of Electromagnetic Media' [W911NF-12-1-0407]
  4. NSF [ECS-0601345, CBET 0933384, CBET 0932823, CBET 1036672]
  5. Robert A. Welch Foundation [C-1664]
  6. NIH [GM085043]
  7. NSF DMR [1309765]
  8. ACS PRF [53062-ND6]
  9. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [P50GM082251, R01GM085043] Funding Source: NIH RePORTER

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The high optical and chemical activity of nanoparticles (NPs) signifies the possibility of converting the spin angular momenta of photons into structural changes in matter. Here, we demonstrate that illumination of dispersions of racemic CdTe NPs with right- (left-) handed circularly polarized light (CPL) induces the formation of right- (left-) handed twisted nanoribbons with an enantiomeric excess exceeding 30%, which is similar to 10 times higher than that of typical CPL-induced reactions. Linearly polarized light or dark conditions led instead to straight nanoribbons. CPL 'templating' of NP assemblies is based on the enantio-selective photoactivation of chiral NPs and clusters, followed by their photooxidation and self-assembly into nanoribbons with specific helicity as a result of chirality-sensitive interactions between the NPs. The ability of NPs to retain the polarization information of incident photons should open pathways for the synthesis of chiral photonic materials and allow a better understanding of the origins of biomolecular homochirality.

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