2021
DOI: 10.1021/acsnano.0c08539
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Steering Nanohelix and Upconverted Circularly Polarized Luminescence by Using Completely Achiral Components

Abstract: Enormous attention has been paid to upconverted circularly polarized luminescence (UC-CPL). However, so far, chiral species are still needed in UC-CPL materials, either through the covalent or noncovalent bond. Here, we report a general supramolecular coassembly approach for the fabrication of UC-CPL systems from completely achiral components. We have found that an achiral C 3 -symmetric molecule could form a chiral nanohelix through symmetry breaking, which could serve as a general helical platform to endow a… Show more

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Cited by 56 publications
(45 citation statements)
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“…The efficiency of the TTA process will be reduced due to chiralityinduced spin polarization, which is possibly responsible for the enhancement of g lum value. Moreover, CPLs based on TTA mechanism have been widely presented in other systems like liquid crystals [278,279] and supramolecular gels [280,281]. These chiral hosts have received considerable attentions for the flexible controllability of CPL.…”
Section: Photon Upconversion Systemsmentioning
confidence: 99%
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“…The efficiency of the TTA process will be reduced due to chiralityinduced spin polarization, which is possibly responsible for the enhancement of g lum value. Moreover, CPLs based on TTA mechanism have been widely presented in other systems like liquid crystals [278,279] and supramolecular gels [280,281]. These chiral hosts have received considerable attentions for the flexible controllability of CPL.…”
Section: Photon Upconversion Systemsmentioning
confidence: 99%
“…These chiral hosts have received considerable attentions for the flexible controllability of CPL. Recent work has revealed a strategy by using achiral C 3 -symmetric molecules to build the chiral nanohelix through symmetry breaking, and then it can load TTA-UC donor/acceptor pairs [280]. Seeded vortex is proven available to control the chirality of assembly and corresponding UC-CPL.…”
Section: Photon Upconversion Systemsmentioning
confidence: 99%
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“…14 In addition, chiral supramolecular structures are considered as excellent matrix and templates to regulate the assembly of inorganic building blocks, 221 endowing hybrid assemblies with compelling chiroptic performances, such as chiral plasmonic and circularly polarized emission. 2,15,190,192,[222][223][224] Therefore, utilizing the hierarchical self-assembly strategy to combine chiral molecules and other functional materials is a promising research direction as the chirality might endow the hybrid assemblies with interesting and exciting properties.…”
Section: Conclusion and Out Lookmentioning
confidence: 99%
“…For this matter, applications of CPL properties on biological issues are seriously limited by low tissue penetration depth and phototoxicity to healthy tissues. It is then promising that with development of CPL testing techniques to NIR region or new species of CPL-active nanomaterials with NIR emissions or upconverted properties 197 , lanthanide UCNPs for instance, there would be plenty of room available for more CPL-based bioinspired applications in future.…”
Section: Conclusion and Perspectivementioning
confidence: 99%