
Thulium (III) Carbonate Hydrate
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Information about Thulium (III) Carbonate Hydrate / CAS 87198-17-2
Thulium Carbonate hydrate is a white to off-white powder that functions as a versatile intermediate in rare-earth chemistry. As a Carbonate salt, it can be readily converted into other Thulium-containing compounds, most notably Thulium Oxide, through controlled thermal decomposition. This reactivity also makes it a useful starting material for synthesizing rare-earth halides via reaction with mineral acids. A key example is Thulium Chloride, which plays an important role in the fabrication of Thulium-doped fibers (TDFs) and Thulium-doped fiber lasers (TDFLs), widely studied for their efficiency in near-infrared laser applications.
Several preparation routes exist for Thulium Carbonate. One common method involves the hydrolysis of Thulium trichloroacetate, which yields the Carbonate under appropriate conditions. Another approach uses the homogeneous precipitation technique, in which an aqueous solution of Thulium Chloride is heated in the presence of urea. As urea slowly decomposes, it generates Carbonate and Hydroxide ions in situ, promoting controlled formation of Thulium Carbonate with relatively uniform particle characteristics.
Despite its utility, Thulium chemistry remains less extensively developed compared to other rare-earth systems. Thulium is the least abundant of the stable rare-earth elements in the Earth’s crust, contributing to its relatively high cost and limited commercial use. Interest in Thulium has grown in recent years, particularly in photonics and medical technologies. Its unique optical properties and improving fabrication techniques continues to drive research into new applications for Thulium-containing compounds.
- Michalska, M. (2022). Foreword to the Special Issue on Thulium-Doped Fiber Lasers. Applied Sciences,12(21), 11267. https://doi.org/10.3390/app122111267
- Refat, M. S. (2004). A Novel Method for the Synthesis of Rare Earth Carbonates. Synthesis and Reactivity in Inorganic and Metal-Organic Chemistry, 34(9), 1605–1613. https://doi.org/10.1081/SIM-200026601
- Ramírez-Martínez, N. J., Núñez-Velázquez, M., Umnikov, A. A., & Sahu, J. K. (2019). Highly efficient thulium-doped high-power laser fibers fabricated by MCVD. Optics Express, Vol. 27, Issue 1, Pp. 196-201, 27(1), 196–201. https://doi.org/10.1364/OE.27.000196
- Yang, C., Zheng, B., Huang, J.et al.2.05 μm high-energy thulium-doped fibre amplifier based on backward pumping. Sci Rep 15, 5664 (2025). https://doi.org/10.1038/s41598-025-89987-x.
Safety
- H315Causes skin irritation.
- H319Causes serious eye irritation.
- H335May cause respiratory irritation.
- P261Avoid breathing dust/fume/gas/mist/vapours/spray.
- P305+P351+P338IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses, if present and easy to do. Continue rinsing.
