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ACQ‐to‐AIE Transformation: Tuning Molecular Packing by Regioisomerization for Two‐Photon NIR Bioimaging
Authors:Yuanyuan Li  Shunjie Liu  Huwei Ni  Haoke Zhang  Hequn Zhang  Clarence Chuah  Chao Ma  Kam Sing Wong  Jacky W Y Lam  Ryan T K Kwok  Jun Qian  Xuefeng Lu  Ben Zhong Tang
Abstract:The traditional design strategies for highly bright solid‐state luminescent materials rely on weakening the intermolecular π–π interactions, which may limit diversity when developing new materials. Herein, we propose a strategy of tuning the molecular packing mode by regioisomerization to regulate the solid‐state fluorescence. TBP‐e‐TPA with a molecular rotor in the end position of a planar core adopts a long‐range cofacial packing mode, which in the solid state is almost non‐emissive. By shifting molecular rotors to the bay position, the resultant TBP‐b‐TPA possesses a discrete cross packing mode, giving a quantum yield of 15.6±0.2 %. These results demonstrate the relationship between the solid‐state fluorescence efficiency and the molecule's packing mode. Thanks to the good photophysical properties, TBP‐b‐TPA nanoparticles were used for two‐photon deep brain imaging. This molecular design philosophy provides a new way of designing highly bright solid‐state fluorophores.
Keywords:ACQ-to-AIE transformation  aggregation-induced emission  cross packing  regioisomerization  two-photon imaging
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