Academic literature on the topic 'Terbium carbonate'

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Journal articles on the topic "Terbium carbonate"

1

Balakrishna, Kurra, S. Dadhich Anima та Babu Mukkamala Saratchandra. "Biomimetic mineralization of CaCO3 , TbCO3 and Ca-TbCO3 mediated by HEDTA and β -CD". Journal of Indian Chemical Society Vol. 91, Jun 2014 (2014): 1029–34. https://doi.org/10.5281/zenodo.5722907.

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Department of Chemistry, GITAM University, Visakhapatnam-530 045, Andhra Pradesh, India <em>E-mail</em> : mscbabu@yahoo.com Fax : 91-891-2790032 <em>Manuscript received online 04 November 2013, revised 13 December 2013, accepted 13 December 2013</em> Growth morphology of calcium carbonate, terbium carbonate and their mixed metal carbonates have been investigated in presence of organic additives namely <em>N</em>-(2-hydroxyethyl)ethylenediamine-<em>N,N&acute;,N</em>&acute;-triaceticacid (HEDTA) and &beta; -cyclodextrin (&beta; -CD). Rhombohedral calcite phase of calcium carbonate transformed to
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2

Litvinova, Tatiana, Stepan Gerasev, Vasiliy Sergeev, and Egor Lidanovskiy. "Rare Earth Metal Ion-Associates in Ln3+—CO32−—H2O System." Metals 15, no. 3 (2025): 239. https://doi.org/10.3390/met15030239.

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This study focused on the nature of rare earth metal complex compounds that can form during the carbonate–alkaline processing of industrial waste materials, such as phosphogypsum and red mud, at 70–100 °C and 1–10 atm. Experimental findings revealed that the dissolution of synthetic carbonates of rare earth elements (REEs) in a concentrated carbonate-ion medium (3 mol/L) leads to the formation of ion-associates of varying strengths. Light (lanthanum, praseodymium, and neodymium) and medium (samarium) REE groups exhibited a tendency to form loose ion-associates, whereas heavy REEs (terbium, dys
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3

Fialkovsky, Igor, Denis Lutskiy, Andrey Alekseev, and Alexey Blinov. "Modelling the Effect of Temperature on the Stability of Bromide and Carbonate Complexes of Europium, Gadolinium, Terbium and Determination of their Thermodynamic Functions." Materials Science Forum 1031 (May 2021): 103–8. http://dx.doi.org/10.4028/www.scientific.net/msf.1031.103.

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A method has been developed for calculating the stability constants of inorganic complexes of rare-earth metals at various temperatures, based on analysis of the literature data by obtaining a linear regression equation on the form: . Using this method, the stability constants of bromide LnBr2+ and carbonate LnCO3+ complexes of europium, terbium, and gadolinium in aqueous solutions at temperatures of 50, 75, and 100 ° C were obtained. The obtained values of the coefficients А(T1) and В(T1) of the linear regression equation can be used to calculate the stability constants of complexes of europi
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4

Varlashkin, P. G., G. M. Begun, and J. R. Peterson. "On the nature of tetravalent terbium in carbonate-hydroxide solutions." Journal of the Less Common Metals 109, no. 1 (1985): 123–34. http://dx.doi.org/10.1016/0022-5088(85)90112-2.

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5

Ünal, Fatma. "Straightforward route for terbium oxide powders: synthesis, morphology, and microstructural parameters." International Journal of Materials Research 113, no. 4 (2022): 287–94. http://dx.doi.org/10.1515/ijmr-2021-8484.

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Abstract The goals of this study lie in the endeavour to synthesise terbium oxide powders, calculation of the average crystallite size, lattice parameter, lattice strain and dislocation density by using X-ray diffraction peak broadenings and, particularly, examination of the effects of precursor molarity on morphology, microstructural parameters and crystal imperfections. The X-ray diffraction patterns demonstrated that the powders had pure cubic bixbyite body-centred phase with high crystallinity. The crystallite size values varied between 21.05 and 31.45 nm depending on both precursor molari
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Song, Miaomiao, Dongliang Tao, Guohua Luo, et al. "Preparation and properties of polyethylene-coated terbium complex/calcium carbonate composite fluorescent material." Journal of Luminescence 203 (November 2018): 292–98. http://dx.doi.org/10.1016/j.jlumin.2018.06.013.

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7

Liu, Kang, Xin Shi, Tingjian Wang, Penghui Ai, Wei Gu, and Ling Ye. "Terbium-doped manganese carbonate nanoparticles with intrinsic photoluminescence and magnetic resonance imaging capacity." Journal of Colloid and Interface Science 485 (January 2017): 25–31. http://dx.doi.org/10.1016/j.jcis.2016.09.010.

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Rahimi-Nasrabadi, Mehdi, Seied Mahdi Pourmortazavi, Mohmmad Reza Ganjali, and Parviz Norouzi. "Nanosized terbium carbonate and oxide particles: optimized synthesis, and application as photodegradation catalyst." Journal of Materials Science: Materials in Electronics 29, no. 4 (2017): 2988–98. http://dx.doi.org/10.1007/s10854-017-8229-z.

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9

Saputra, Heru Agung, Anni Anggraeni, Abdul Mutalib, and Husein Hernandi Bahti. "Development of a Fast Simultaneous Analysis Method for Determination of Middle Rare-Earth Elements in Monazite Samples." Jurnal Kimia Sains dan Aplikasi 24, no. 5 (2021): 177–84. http://dx.doi.org/10.14710/jksa.24.5.177-184.

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Rare earth elements are a set of seventeen metallic elements, which is an essential part of many high-tech devices. Hence, analysis and/or separation of the rare earth elements from their mineral become crucial. A novel analysis method combining ultraviolet-visible spectroscopic and multivariate analysis was developed to determine middle rare earth elements quickly and simultaneously. The data collected from ultraviolet-visible spectroscopic were analyzed by multivariate analysis. The results showed that the developed method has good accuracy and precision with a detection limit of 1.375 (± 0.
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JIN Feng, 金. 凤., 张文军 ZHANG Wen-jun, 陶栋梁 TAO Dong-liang, et al. "Preparation of Novel Terbium Complexes Using Anhydrous Sodium Carbonate as Base and Nanometer Core." Chinese Journal of Luminescence 36, no. 7 (2015): 782–87. http://dx.doi.org/10.3788/fgxb20153607.0782.

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