Issue 15, 2025

Aqueous up-conversion organic phosphorescence and tunable dual emission in a single-molecular emitter

Abstract

Materials exhibiting up-conversion room-temperature phosphorescence (RTP) with multi-emissive properties in aqueous solutions hold significant potential for optical imaging and sensing applications. However, achieving such photophysical materials within a molecular emitter remains a formidable challenge. Herein, we report a series of single-molecule chromophores demonstrating aqueous tunable up-conversion RTP and fluorescence dual emission. The RTP and fluorescence emission could be finely adjusted by manipulating the excitation wavelength within the visible and near-infrared range, enabling dynamic color modulation across the entire visible spectrum from blue to orange-red. Furthermore, we utilized the up-conversion RTP capability of a single-molecular emitter to achieve two-photon and time-resolved imaging. More importantly, through ratiometric regulation of phosphorescence by temperature combined with stable fluorescence as an internal reference, the RTP molecule enabled reliable temperature sensing in living cells. This study unveils a highly efficient strategy for fabricating intelligent organic RTP materials and sensors featuring dynamically controlled multi-emission.

Graphical abstract: Aqueous up-conversion organic phosphorescence and tunable dual emission in a single-molecular emitter

Supplementary files

Article information

Article type
Edge Article
Submitted
09 N’w 2024
Accepted
03 Kul 2025
First published
03 Kul 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2025,16, 6290-6297

Aqueous up-conversion organic phosphorescence and tunable dual emission in a single-molecular emitter

Y. Li, Z. Huang, A. Shao, Z. Wu, Z. He, H. Tian and X. Ma, Chem. Sci., 2025, 16, 6290 DOI: 10.1039/D4SC08330J

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