Research Article | Open Access | Download PDF
Volume 13 | Issue 1 | Year 2026 | Article Id. IJAC-V13I1P101 | DOI : https://doi.org/10.14445/23939133/IJAC-V13I1P101A Rhodamine B Based Fe3+-Selective Colorimetric and Fluorescent Probe
Huang Yuxuan, Du Tengyuan, Yu Chunwei, Zhang Jun
| Received | Revised | Accepted | Published |
|---|---|---|---|
| 16 Feb 2026 | 25 Mar 2026 | 11 Apr 2026 | 29 Apr 2026 |
Citation :
Huang Yuxuan, Du Tengyuan, Yu Chunwei, Zhang Jun, "A Rhodamine B Based Fe3+-Selective Colorimetric and Fluorescent Probe," International Journal of Applied Chemistry, vol. 13, no. 1, pp. 1-5, 2026. Crossref, https://doi.org/10.14445/23939133/IJAC-V13I1P101
Abstract
A novel rhodamine B-based derivative 1, functionalized with an Ethylenediamine-N-Ethanolamine moiety, was rationally designed and synthesized as an “off-on” fluorescent probe for Fe3+ detection. This probe demonstrated outstanding selectivity and high sensitivity toward Fe3+ over other competing metal ions in aqueous media, achieving a remarkably low detection limit of 0.33 μM. The sensing mechanism was attributed to a Fe3+-triggered, reversible ring-opening process of the Rhodamine Spirolactam Unit(RSL), which switched the fluorescence from a non-emissive state to a strongly emissive form. Based on Job’s plot analysis and spectroscopic titrations, a 1:1 binding stoichiometry between probe 1 and Fe3+ was established. Importantly, the practical utility of this probe was successfully validated through its application in the fluorescence imaging of Fe³⁺ in living cells, highlighting its potential for biological and environmental monitoring.
Keywords
Rhodamine B Derivative, Fluorescent Probes, Fe3+, Fluorescence Imaging, Off-On Signal.
References
- Ksenia V. Ksenofontova et al., “Amine-Reactive BODIPY Dye: Spectral Properties and Application for Protein Labeling,” Molecules, vol. 27, no. 22, pp. 1-20, 2022.
[CrossRef] [Google Scholar] [Publisher Link] - Riya Choudhary, and Sachin Kumar Srivastava, “Templating Assisted Fabrication of Flexible, Highly Stable and Uniform Plasmonic Platform for Ultrahigh Enhancement of Raman and Fluorescence Signals: Model Sensing of Rhodamine-6G,” Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol. 338, 2025.
[CrossRef] [Google Scholar] [Publisher Link] - Dongsheng Xiang et al., “A Novel on-off Fluorescent Probe with Rapid Response for the Selective and Sensitive Detection of Co2+,” Inorganic Chemistry Communications, vol. 111, 2020.
[CrossRef] [Google Scholar] [Publisher Link] - James P. Sumnera, and Raoul Kopelman, “Alexa Fluor 488 as an Iron Sensing Molecule and its Application in PEBBLE Nanosensors,” Analyst, vol. 130, no. 4, pp. 528-533, 2005.
[CrossRef] [Google Scholar] [Publisher Link] - Philip Aisen, Marianne Wessling-Resnick, and Elizabeth A Leibold, “Iron Metabolism,” Current Opinion in Chemical Biology, vol. 3, no. 2, pp. 200-206, 1999.
[CrossRef] [Google Scholar] [Publisher Link] - Bao-xing Shen, and Ying Qian, “Building Rhodamine-BODIPY Fluorescent Platform using Click Reaction: Naked-Eye Visible and Multi-Channel Chemodosimeter for Detection of Fe3+ and Hg2+,” Sensors and Actuators B: Chemical, vol. 260, pp. 666-675, 2018.
[CrossRef] [Google Scholar] [Publisher Link] - Jie Zhang et al., “Novel Fluorescent Probe Toward Fe3+ based on Rhodamine 6G Derivatives and its Bioimaging in Adult Mice, Caenorhabditis Elegans, and Plant Tissues,” ACS Omega, vol. 6, no. 12, pp. 8616-8624, 2021.
[CrossRef] [Google Scholar] [Publisher Link] - K.M. Alotaibi et al., “Total Determination and Chemical Speciation of Fe2+ and Fe3+ Species in Water based on the Fluorescence Quenching of 4,5-dihydroxy-1,3-Benzenedisulfonic Acid as a Sensing Platform,” Journal of Fluorescence, vol. 35, no. 12, pp. 13103-13115, 2025.
[CrossRef] [Google Scholar] [Publisher Link] - Md Foridul Islam et al., “A Rhodamine B-based “Turn-On” Fluorescent Probe for Selective Fe3+ Ions Detection,” Sensors, vol. 25, no. 11, pp. 1-15, 2025.
[CrossRef] [Google Scholar] [Publisher Link] - Xin Jiang et al., “A Ratiometric Fluorescent Probe based on RhB Functionalized Tb-MOFs for the Continuous Visual Detection of Fe3+ and AA,” Molecules, vol. 28, no. 15, pp. 1-14, 2023.
[CrossRef] [Google Scholar] [Publisher Link] - Rupinder Singh et al., “Al3+ Sensing through Different Turn-on Emission Signals vis-a-vis Two Different Excitations: Applications in Biological and Environmental Realms,” Analytica Chimica Acta, vol. 1025, pp. 172-180, 2018.
[CrossRef] [Google Scholar] [Publisher Link] - Gasser M. Khairy et al., “Fluorescence Determination of Fe (III) in Drinking Water using a New Fluorescence Chemosensor,” RSC Advances, vol. 12, no. 42, pp. 27679-27686, 2022.
[CrossRef] [Google Scholar] [Publisher Link] - Amal Al-Azmi, and Elizabeth John, “Synthesis and Characterization of Novel Tricyanofuran Hydrazone Probe: Solvatochromism, Density-Functional Theory Calculation and Selective Fluorescence, and Colorimetric Determination of Iron (III),” Luminescence, vol. 36, no. 5, pp. 1220-1230, 2021.
[CrossRef] [Google Scholar] [Publisher Link] - Li Xiao et al., “Reaction-based Fluorescent Silk Probes with High Sensitivity and Selectivity to Hg2+ and Ag+ Ions,” Journal of Material Chemistry C, vol. 9, no. 14, pp. 4877-4887, 2021.
[CrossRef] [Google Scholar] [Publisher Link] - Yuqi Zhang et al., “A Novel Rhodamine-based Colorimetric and Fluorometric Probe for Simultaneous Detection of Multi-Metal Ions,” Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol. 230, 2020.
[CrossRef] [Google Scholar] [Publisher Link] - Yasuhiro Shiraishi et al., “A Rhodamine-Cyclen Conjugate as a Highly Sensitive and Selective Fluorescent Chemosensor for Hg (II),” Journal of Organic Chemistry, vol. 73, no. 21, pp. 8571-8574, 2008.
[CrossRef] [Google Scholar] [Publisher Link]