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Get Free AccessA luminescent liquid crystal molecule (TPEMes) with efficient solid-state emission is rationally constructed via the chemical conjugation of blue-emitting tetraphenylethene cores and luminescent mesogenic tolane moieties, which are both featured with aggregation-induced emission properties. As for this fluorophore, aggregation-induced energy transfer from the emissive tolane mesogens to the lighting-up tetraphenylethene units endows the molecule pure blue emission in the suspension and bulk state. Combining differential scanning calorimetry, polarized optical microscope, and one-dimensional X-ray diffraction (1D XRD) experiments, the compound TPEMes is deduced to adapt thermodynamically more stable layered crystalline phase and can be "frozen" into a monotropic smectic mesophase due to kinetic reasons. As a result of more dense packing of TPEMes in the crystalline phase indicated by 1D XRD, the luminescence of TPEMes in crystalline phase blue-shifted by 17 nm relative to the metastable mesophase.
Yi Liu, You Li, Fa Xu Lin, Kuo Fu, Wang Zhang Yuan, Er‐Qiang Chen, Zhen‐Qiang Yu, Ben Zhong Tang (2018). Highly Efficient Luminescent Liquid Crystal with Aggregation-Induced Energy Transfer. , 11(3), DOI: https://doi.org/10.1021/acsami.8b14575.
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Type
Article
Year
2018
Authors
8
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1021/acsami.8b14575
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