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  5. Incorporation of Planar Blocks into Twisted Skeletons: Boosting Brightness of Fluorophores for Bioimaging beyond 1500 Nanometer

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Article
en
2020

Incorporation of Planar Blocks into Twisted Skeletons: Boosting Brightness of Fluorophores for Bioimaging beyond 1500 Nanometer

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en
2020
Vol 14 (10)
Vol. 14
DOI: 10.1021/acsnano.0c07527

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Ben Zhong Tang
Ben Zhong Tang

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Shunjie Liu
Runze Chen
Jianquan Zhang
+10 more

Abstract

The brightness of organic fluorescence materials determines their resolution and sensitivity in fluorescence display and detection. However, strategies to effectively enhance the brightness are still scarce. Conventional planar π-conjugated molecules display excellent photophysical properties as isolated species but suffer from aggregation-caused quenching effect when aggregated owing to the cofacial π-π interactions. In contrast, twisted molecules show high photoluminescence quantum yield (ΦPL) in aggregate while at the cost of absorption due to the breakage in conjugation. Therefore, it is challenging to integrate the strong absorption and high solid-state ΦPL, which are two main indicators of brightness, into one molecule. Herein, we propose a molecular design strategy to boost the brightness through the incorporation of planar blocks into twisted skeletons. As a proof-of-concept, twisted small-molecule TT3-oCB with larger π-conjugated dithieno[3,2-b:2',3'-d]thiophene unit displays superb brightness at the NIR-IIb (1500-1700 nm) than that of TT1-oCB and TT2-oCB with smaller thiophene and thienothiophene unit, respectively. Whole-body angiography using TT3-oCB nanoparticles presents an apparent vessel width of 0.29 mm. Improved NIR-IIb image resolution is achieved for femoral vessels with an apparent width of only 0.04 mm. High-magnification through-skull microscopic NIR-IIb imaging of cerebral vasculature gives an apparent width of ∼3.3 μm. Moreover, the deeply located internal organ such as bladder is identified with high clarity. The present molecular design philosophy embodies a platform for further development of in vivo bioimaging.

How to cite this publication

Shunjie Liu, Runze Chen, Jianquan Zhang, Yuanyuan Li, Mubin He, Xiaoxiao Fan, Haoke Zhang, Xuefeng Lu, Ryan T. K. Kwok, Hui Lin, Jacky W. Y. Lam, Jun Qian, Ben Zhong Tang (2020). Incorporation of Planar Blocks into Twisted Skeletons: Boosting Brightness of Fluorophores for Bioimaging beyond 1500 Nanometer. , 14(10), DOI: https://doi.org/10.1021/acsnano.0c07527.

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Publication Details

Type

Article

Year

2020

Authors

13

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsnano.0c07527

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