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Updated: Sep 16, 2025

A Technical Guide for Performing Spectroscopic Measurements on Metal-Organic Frameworks
Published on: April 28, 2023
Bimetallic Fe, Ru-doped Zn-Centered Organic Framework Mesoporous Carbon for Single-Wavelength Near-Infrared-Induced
Jingzhen Cao1, Qian Lu1, Zhengyang Liu1
1School of Materials Science and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.
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Single-wavelength synergistic photothermal/photodynamic therapy (PTT/PDT) is gradually emerging in cancer treatment, with the key limitation being the photosensitizer. In this work, a metal-organic framework-derived mesoporous carbon with zinc centers and doped with iron and ruthenium, exhibiting porphyrin-like properties (denoted as Fe50-Ruy-ZIF900), was successfully synthesized via a green, simple, and mild hydrothermal reaction. The effects of various Fe:Ru doping ratios on the morphology, structure, and PTT/PDT of Fe50-Ruy-ZIF900 were studied. We found that bimetallic doping significantly improved both the PTT and PDT performance of the materials. Especially for Fe50-Ru10-ZIF, it demonstrated the best PTT/PDT performance under single-wavelength near-infrared (808 nm) light irradiation in a hydrophilic environment. Its photothermal conversion efficiency (η) can be as high as 57.66%, and the singlet oxygen (1O2) quantum yield (Φ) is about 0.0053, comparable to that of indocyanine green (ICG). This enhancement may be attributed to the synergistic effect between homologous elements of the same family. In addition, under single-wavelength near-infrared laser irradiation, Fe50-Ru10-ZIF900 can generate a substantial amount of 1O2 in living tumor cells and synergistically induce extensive necrosis/apoptosis of tumor cells. All of these findings indicate that Fe50-Ru10-ZIF900 can serve as an excellent photosensitizer, bringing greater feasibility to the realization of single-wavelength dual-mode PTT/PDT treatment.

