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  5. Red-to-NIR Emissive Radical Cations Derived from Simple Pyrroles for Bio-Imaging

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Preprint
en
2021

Red-to-NIR Emissive Radical Cations Derived from Simple Pyrroles for Bio-Imaging

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en
2021
DOI: 10.33774/chemrxiv-2021-l4mcq

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Ben Zhong Tang
Ben Zhong Tang

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Meng Gao
Ben Zhong Tang
Kai Liu
+3 more

Abstract

Red-to-near-infrared (NIR) fluorophores are highly desirable for bio-imaging with advantages of excellent tissue penetration ability and less interference from auto-fluorescence, but their synthesis usually require tedious procedures and it’s thus highly desirable for red-to-NIR fluorophores directly generated from easily available substrates. Compared with the conventional closed-shell fluorophores, radical cations are featured with a large red-shift absorption, but most of them are not fluorescent due to the fast internal conversion between excited and ground state with a small energy gap. Moreover, radical cations suffer from instability because they can easily undergo radical coupling or nucleophilic addition reactions. Herein, we found that 2,5-dimethylpyrroles can rapidly generate red-to-NIR emissive radical cations, which can be stabilized by adsorption on thin layer chromatography (TLC) plate or being encapsulated in cucurbit[7]uril (CB[7]). The NIR-emissive radical cations derived from pyrroles were verified by electron paramagnetic resonance (EPR) spectroscopy and theoretical calculations. Importantly, the pyrrole-derived radical cations encapsulated in CB[7] can be used for mitochondrial imaging in living cells and tumor imaging in vivo with a high signal-to-noise ratio. The easily available and red-to-NIR emissive radical cations derived from simple pyrroles are promising for applications in biomedical study.

How to cite this publication

Meng Gao, Ben Zhong Tang, Kai Liu, Lihua Zheng, Wenchao Zhu, Zikai Zhou (2021). Red-to-NIR Emissive Radical Cations Derived from Simple Pyrroles for Bio-Imaging. , DOI: https://doi.org/10.33774/chemrxiv-2021-l4mcq.

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Publication Details

Type

Preprint

Year

2021

Authors

6

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.33774/chemrxiv-2021-l4mcq

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