Academic literature on the topic 'Lanthanum(III) chloride'

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Journal articles on the topic "Lanthanum(III) chloride"

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Cahyanegoro, A. G., Sudibyo, M. Badaruddin, et al. "Study of magnetoelectrodeposition of lanthanum (III) chloride heptahydrate leached with sulfuric acid." IOP Conference Series: Earth and Environmental Science 1017, no. 1 (2022): 012011. http://dx.doi.org/10.1088/1755-1315/1017/1/012011.

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Abstract A rare-earth element (REE) is one of the minerals with many resources in Indonesia and lanthanum is one of REE. Lanthanum is widely used as a material for x-ray screens, glass lenses, optical fiber, capacitor batteries, and ceramics. Electrodeposition is a metal deposition process. The advantages of electrodeposition are easy and inexpensive. The method is simple since it can be done at room temperature, and it is inexpensive because it only requires basic equipment. However, there is a drawback to conventional electrodeposition: the roughness of the resultant layer (non-uniform cryst
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Thankamony, M., B. Sindhu Kumari, G. Rijulal, and K. Mohanan. "Lanthanum(III) chloride complexes with heterocyclic Schiff bases." Journal of Thermal Analysis and Calorimetry 95, no. 1 (2008): 259–66. http://dx.doi.org/10.1007/s10973-008-9116-x.

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R., K. Dubey, K. Mishra A., Mariya Ayesha, and Kumari Neelam. "Synthesis and characterization of lanthanum(III) and neodymium(III) complexes containing various Schiff bases." Journal of Indian Chemical Society Vol. 87, Sep 2010 (2010): 1047–52. https://doi.org/10.5281/zenodo.5801995.

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Synthetic Inorganic and Metallo-organic Research Laboratory, Department of Chemistry, University of Allahabad, Allahabad-211 002, Uttar Pradesh, India <em>E-mail :</em> rajalkoxy@yahoo.com <em>Manuscript received 13 August 2009, revised 25 February 2010, accepted 16 March 2010</em> Some new complexes of lanthanum(m) and neodymium(III) with different Schiff bases (derived from salicylaldehyde with Z.metbyl-1-amlnobenzene and 2-amlnopyridine have been synthesized and characterized by elemental (La/Nd, C, H, N and Cl) analysis, magnetic susceptibility measurements and spectral (UV-Visible,<strong
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Belova, Vera V., Yulia V. Tsareva, Yulia A. Zakhodyaeva, Vladimir K. Ivanov, and Andrey A. Voshkin. "Solvent Extraction of Lanthanides(III) in the Presence of the Acetate Ion Acting as a Complexing Agent Using Mixtures of Cyanex 272 and Caprylic Acid in Hexane." Processes 9, no. 12 (2021): 2222. http://dx.doi.org/10.3390/pr9122222.

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A new extraction system containing a mixture of Cyanex 272 and caprylic acid is proposed for the extraction and separation of lanthanides(III). It was shown that this system possesses a high level of extraction ability and capacity. The extraction of lanthanides(III) from chloride-acetate and nitrate-acetate media was investigated on an example of La(III). The composition of the extracted species was confirmed, based on the analysis of lanthanum(III) extraction isotherms. In the case of acetic-acetate aqueous solutions, a decrease in lanthanum(III) extraction efficiency was observed, due to th
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Tripathi, Priti, Akhilesh Kumar Srivastava, Om Prakash Pandey, and Soumitra Kumar Sengupta. "SYNTHESIS, SPECTRAL CHARACTERIZATION AND ANTIFUNGAL STUDIES ON LANTHANUM (III) AND PRASEODYMIUM (III) COMPLEXES WITH N2O2DIAZADIOXAMACROCYCLES." International Journal of Advanced Research 8, no. 11 (2020): 01–10. http://dx.doi.org/10.21474/ijar01/11973.

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A novel series of N2O2diazadioxamacrocyclic complexes of type [Ln(mac)Cl3] has been synthesized via the condensation reactions of a 3-(phenyl/substituted phenyl)-4-amino-5-hydrazino-1,2,4-triazoles with salicylaldehyde and 1,4-dibromobutane in the presence of lanthanum(III) chloride and praseodymium(III) chloride in ethanol. All the newly synthesized compounds were characterized by elemental analysis, electronic absorption, IR, 1HNMR. The particle size of the complexes have been calculated from XRD spectral using Debye-Scherrer formula and these are found to be in 29-31 nm range. In order to e
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Protsenko, Vyacheslav, L. M. Pavlenko, L. S. Bobrova, S. A. Korniy, T. E. Butyrina, and F. I. Danilov. "Ni–La coatings as electrocatalysts for hydrogen evolution reaction deposited from electrolytes based on a deep eutectic solvent." Voprosy Khimii i Khimicheskoi Tekhnologii, no. 3 (June 2023): 103–9. http://dx.doi.org/10.32434/0321-4095-2023-148-3-103-109.

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Ni–La electrocatalytic coatings were electrodeposited from electrolytes based on a eutectic mixture of choline chloride and ethylene glycol (the so-called deep eutectic solvent "ethaline") containing dissolved NiCl2 and LaCl3 salts. It was shown that in this case, nickel alloys containing up to approximately 1.75 wt.% lanthanum were formed. An increase in the cathodic current density and the content of La(III) salt in the solution contributed to a higher content of lanthanum in the electrodeposits. The presence of a lanthanum(III) salt in the electrolyte led to a noticeable leveling of the sur
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Schvaneveldt, Mark, Devin Rappleye, and Ranon G. Fuller. "Electroanalytical Measurements of Lanthanum (III) Chloride in Molten Calcium Chloride and Molten Eutectic Calcium Chloride and Lithium Chloride." ECS Meeting Abstracts MA2021-02, no. 21 (2021): 1909. http://dx.doi.org/10.1149/ma2021-02211909mtgabs.

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Deacon, Glen B., Tiecheng Feng, Peter C. Junk, et al. "Structural Variety in Solvated Lanthanoid(III ) Halide Complexes." Australian Journal of Chemistry 53, no. 10 (2000): 853. http://dx.doi.org/10.1071/ch00117.

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Treatment of lanthanum metal with CH2Br2 or CH2I2 in tetrahydrofuran (thf) under ultrasound conditions yields the corresponding [LaX3(thf)4] (X = Br, I) complexes in good yield. Recrystallization of [LaBr3(thf)4] from 1,2-dimethoxyethane (dme) or bis(2-methoxyethyl) ether (diglyme) generates [LaBr2(µ-Br)(dme)2]2 and [LaBr2(dig-lyme)2][LaBr4(diglyme)]. Treatment of lanthanoid metals with hexachloroethane in dme yields [LnCl3(dme)2] (Ln = La, Nd, Er or Yb) and in acetonitrile [YbCl2(MeCN)5]2[YbCl3(MeCN)(-Cl)2YbCl3(MeCN)]. The reaction of Yb metal pieces with 1,2-dibromoethane in thf and dme gave
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Chirkst, D. E., O. L. Lobacheva, and N. V. Dzhevaga. "Ion flotation of lanthanum(III) and holmium(III) from nitrate and nitrate-chloride media." Russian Journal of Applied Chemistry 85, no. 1 (2012): 25–28. http://dx.doi.org/10.1134/s1070427212010053.

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Urbanski, T. S., C. Abbruzzese, P. Fornari, and R. Massidda. "The extraction of cerium (III) and lanthanum (III) with Kelex 100 from chloride solutions." Hydrometallurgy 25, no. 2 (1990): 185–95. http://dx.doi.org/10.1016/0304-386x(90)90038-4.

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Book chapters on the topic "Lanthanum(III) chloride"

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Martin, S. O., J. C. Sager, K. Sridharan, M. Mohammadian, and T. R. Allen. "Electrochemical Properties of Lanthanum Chloride-Containing Molten LiCI-KCl for Nuclear Waste Separation Studies." In Advances in Materials Science for Environmental and Energy Technologies II. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118751176.ch10.

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Leung, M. k., and T. Y. Luh. "Catalyzed by Lanthanum(III) Chloride." In Acetals: O/N, S/S, S/N, and N/N and Higher Heteroatom Analogues. Georg Thieme Verlag KG, 2007. http://dx.doi.org/10.1055/sos-sd-030-00204.

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