Issue 35, 2022

Bismuth- and gadolinium-codoped carbon quantum dots with red/green dual emission for fluorescence/CT/T1-MRI mode imaging

Abstract

Carbon quantum dots (CQDs) with good biosafety can be doped with metals to construct multimodal imaging probes with a wide range of applications in fluorescence and molecular imaging. However, developing CQDs with both long-wavelength emission and a variety of imaging modes remains a challenge. In this article, novel bismuth- and gadolinium-codoped carbon quantum dots (Bi,Gd-CQDs) were developed using a hydrothermal method for green and red fluorescence imaging, X-ray computed tomography (CT) imaging, and T1-weighted magnetic resonance imaging (T1-weighted MRI). In addition to exceptional water solubility, strong steady fluorescence characteristics, and great biocompatibility, the obtained Bi,Gd-CQDs have a high X-ray attenuation coefficient and a short magnetic resonance T1 relaxation time. Additionally, cell imaging involved red fluorescence imaging with deep penetration. Therefore, the prepared Bi,Gd-CQDs with green and red dual-emissions can be used as nanoprobes for fluorescence, CT, and T1-weighted MR imaging, expanding their application prospects in the field of biomedicine.

Graphical abstract: Bismuth- and gadolinium-codoped carbon quantum dots with red/green dual emission for fluorescence/CT/T1-MRI mode imaging

Supplementary files

Article information

Article type
Paper
Submitted
12 Jul 2022
Accepted
02 Aug 2022
First published
03 Aug 2022

New J. Chem., 2022,46, 16970-16980

Bismuth- and gadolinium-codoped carbon quantum dots with red/green dual emission for fluorescence/CT/T1-MRI mode imaging

Q. Meng, Y. Wang, C. Li and X. Hu, New J. Chem., 2022, 46, 16970 DOI: 10.1039/D2NJ03420D

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