Academic literature on the topic 'Thallium chlorides'

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Journal articles on the topic "Thallium chlorides"

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Doi, Akira. "Biasing effects on thallium and silver chlorides with dc/ac voltage." Journal of Physics and Chemistry of Solids 66, no. 6 (2005): 1091–100. http://dx.doi.org/10.1016/j.jpcs.2005.01.010.

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Halcovitch, Nathan R., Christopher M. Vogels, Andreas Decken, and Stephen A. Westcott. "Synthesis, characterization, and reactivity of a novel thallium arylspiroboronate ester." Canadian Journal of Chemistry 87, no. 1 (2009): 139–45. http://dx.doi.org/10.1139/v08-107.

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Addition of 3,5-di-tert-butylcatechol (butcat) to solutions of H3B·SMe2 gave the novel diboron species B2(butcat)3 (2) in moderate to high yields. Compound 2 reacts with Tl(acac) to give butcatB(acac) (4) and Tl(Bbutcat2) (5). Attempts to abstract the chlorides from [(dppb)Rh(µ-Cl)]2 (where dppb = 1,4-bis(diphenylphosphino)buthane) using 5 led to the unusual dimer [(dppb)Rh(µ-Cl)2(µ-Tl)Rh(dppb)][Bbutcat2] (6), which contains an unsymmetrical Rh–Tl–Rh bridge.Key words: arylspiroboronate ester, non-coordinating anion, rhodium, thallium.
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Matveichuk, Yu V. "Anion exchange extraction of tallium (III) and mercury (II) complex salts and application of the procedure to extraction-photometric determination of the microquantities of mercury (II)." Industrial laboratory. Diagnostics of materials 87, no. 5 (2021): 20–26. http://dx.doi.org/10.26896/1028-6861-2021-87-5-20-26.

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The goal is to study the anion-exchange extraction of complex thallium (III) and mercury (II) halides (chlorides, bromides, iodides) by a method of a competing intermediate ion using the anions of various dyes — methyl orange, sodium picrate, 2,4-dinitrophenol, methyl red. Mercury (II) and thallium (III) are poisons of high toxicity. The developed method was used to study the anion-exchange extraction of acidocomplexes A solution of methyl orange trinonyloctadecylammonium (TNODA) in toluene was used as an extractant. The method provides determination of mercury (II) with an accuracy of ±2% whe
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James, Margaret Ann, Jason A. C. Clyburne, Anthony Linden, Bruce D. James, John Liesegang, and Vilma Zuzich. "Structural diversity in thallium chemistry: structures of four chlorothallate(III) salts including a novel compound containing three geometrically different anions." Canadian Journal of Chemistry 74, no. 8 (1996): 1490–502. http://dx.doi.org/10.1139/v96-166.

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Four new thallium-containing salts with different alkyl ammonium cations have been prepared and characterized by X-ray crystallography: 1: bis(p-toluidinium) pentachlorothallate(III), [CH3C6H4NH3]2 [TlCl5], M = 597.9, monoclinic, P21/c, a = 7.515(2), b = 21.376(6), c = 12.769(2) Å, β = 92.13(2)°, V = 2050(1) Å3, Z = 4, Dcalc = 1.937 Mg m−3, µ = 8.512 mm−1, T = 293(1) K, R = 0.046; 2: 1,5-pentanediammonium pentachlorothallate(III), [NH3(CH2)5NH3] [TlCl5], M = 485.83, orthorhombic, P212121, a = 13.226(2), b = 13.595(2), c = 7.628(2) Å, V = 1371.6(3) Å3, Z = 4, Dcalc = 2.352 Mg m−3, µ = 12.84 mm−
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Kalinin, Arkadii A., Yevgeny E. Savchenko, and Ekaterina A. Selivanova. "Mustard Gold in the Oleninskoe Gold Deposit, Kolmozero–Voronya Greenstone Belt, Kola Peninsula, Russia." Minerals 9, no. 12 (2019): 786. http://dx.doi.org/10.3390/min9120786.

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The Oleninskoe intrusion-related gold–silver deposit is the first deposit in the Precambrian of the Fennoscandian Shield, where mustard gold has been identified. The mustard gold replaces küstelite with impurities of Sb and, probably, gold-bearing dyscrasite and aurostibite. The mosaic structure of the mustard gold grains is due to different orientations and sizes of pores in the matrix of noble metals. Zonation in the mustard gold grains is connected with mobilization and partial removal of silver from küstelite, corresponding enrichment of the residual matter in gold, and also with the chang
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Schumann, Herbert, and Alexander Lentz. "1,4-Bis(4-acylphen-1 -yl) 1,3-cy clopentadiene und 1,2,3,4-Tetra(4-alkylphen-1-yl)-1,3-cyclopentadiene und deren Natrium-, Thallium(I)- und Eisen(II)-Komplexe / 1,4-Bis(4-acylphen-1-yl)-1,3-cyclopentadienes and 1,2,3,4-Tetra(4-alkylphen-1-yl)- 1,3-cyclopentadienes and their Sodium, Thallium (I) and Iron(II) Complexes." Zeitschrift für Naturforschung B 52, no. 1 (1997): 45–52. http://dx.doi.org/10.1515/znb-1997-0109.

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1,4-Diphenyl-1,3-cyclopentadiene reacts with acyl chlorides RC(O)Cl (R = CH3 (a), C5H11 (c )) to form the corresponding 1,4-bis(4-acylphen-1-yl)-1,3-cyclopentadienes C5 H4 (C6H4 C(O)R)2 (1a, 1c), which upon treatment with NaNH2 or with TlOC2H5 afford the corresponding sodium complexes Na[C5H3 (C6H4C(O)R)2] (2a, 2c) or thallium(I) derivatives Tl[C5H3 (C6H4C(O)R)2] (3a, 3c). The reaction of 1,1′,3,3′-tetraphenylferrocene with CH3C(O)Cl results in the formation of Fe[C5H2 {C(O)CH3} {(C6H4C(O)CH3)2}]- [C5H3 {(C6H4C(O)CH 3)2}] (5), whereas 2c and FeCl2 give Fe[C5H3(C6H4C(O)C5H11)2]2 (4c). The all-p
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Tăbăcaru, Aurel, Rais Ahmad Khan, Giulio Lupidi, and Claudio Pettinari. "Synthesis, Characterization and Assessment of the Antioxidant Activity of Cu(II), Zn(II) and Cd(II) Complexes Derived from Scorpionate Ligands." Molecules 25, no. 22 (2020): 5298. http://dx.doi.org/10.3390/molecules25225298.

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Seeking to enrich the yet less explored field of scorpionate complexes bearing antioxidant properties, we, here, report on the synthesis, characterization and assessment of the antioxidant activity of new complexes derived from three scorpionate ligands. The interaction between the scorpionate ligands thallium(I) hydrotris(5-methyl-indazolyl)borate (TlTp4Bo,5Me), thallium(I) hydrotris(4,5-dihydro-2H-benzo[g]indazolyl)borate (TlTpa) and potassium hydrotris(3-tert-butyl- pyrazolyl)borate (KTptBu), and metal(II) chlorides, in dichloromethane at room temperature, produced a new family of complexes
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Mofolo, Rita M., Cheila M. Canario, Dmitri A. Katskov, and Paolo Tittarelli. "Atomic and molecular spectra of vapors evolved in a graphite furnace. Part 5: gallium, indium and thallium nitrates and chlorides." Spectrochimica Acta Part B: Atomic Spectroscopy 57, no. 3 (2002): 423–38. http://dx.doi.org/10.1016/s0584-8547(01)00380-9.

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Schumann, Herbert, Homa Kucht, and Andreas Kucht. "1-[4-{1,1′,1″,1‴,1′′′′-(1,3-Cyclopentadien-1,2,3,4,5-pentayl)pentakis}]-(4,1-phenylen)-alkanone und -benzoesäure pentaalkylester und deren Natrium- und Thallium(I)-Komplexe / 1-[4-{1,1′,1″,1‴,1′′′′-( 1,3-Cyclopentadiene-1,2,3,4,5-pentayl)pentakis}]-(4,1-phenylene)-alkanones and -benzoic Acid Pentaalkyl Esters and their Sodium- and Thallium(I) Complexes." Zeitschrift für Naturforschung B 47, no. 9 (1992): 1281–89. http://dx.doi.org/10.1515/znb-1992-0912.

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Pentaphenylcyclopentadiene (1) reacts with acyl chlorides RC(O)Cl (R = CH3, C3H7, C5H11, C7H15) with formation of the corresponding [(cyclopentadiene pentayl)pentakis] (1,4-phenylene) alkanones C5H(C6H4C(O)R-4)5 (2a, 2c, 2d and 2e). 2 a reacts with KOCl in water/dioxane to yield C5Cl(C6H4C(O)OH-4)5 (3), which after reaction with C2H5OH and C5H11OH gives the pentaesters C5Cl(C6H4C(O)OR-4)5 (4b and 4d), and after reaction with (CH3)3SnH the corresponding [(cyclopentadiene pentayl)pentakis] benzoic acid pentaalkyl esters C5H(C6H4C(O)OR-4)5 (5b and 5d). Reaction of 2a, 2c, 2d, 2e and 5b with NaNH2
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Nukatsuka, Isoshi, Ryo Horiguchi, Hiroyuki Seitoh, Kunio Ohzeki, and Fumihide Miyashita. "Determination of Thallium in Potassium Chloride and Electrolyte Replenishers by Electrothermal Atomic Absorption Spectrometry." Journal of AOAC INTERNATIONAL 87, no. 4 (2004): 986–90. http://dx.doi.org/10.1093/jaoac/87.4.986.

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Abstract Thallium in potassium chloride and electrolyte replenishers was determined by electrothermal atomic absorption spectrometry (ETAAS) with direct injection of a resin suspension. Thallium(III) was extracted on fine particles of a cellulose nitrate resin (CNR) from dilute HCl (pH 1.6) in the presence of ammonium pyrrolidine-1- carbodithioate. The CNR particles were collected on a membrane filter by filtration under suction, suspended in 1.0 mL 10mM HNO3, and then delivered directly to ETAAS as the suspension. The effects of chloride ions were thoroughly investigated. The results showed t
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Dissertations / Theses on the topic "Thallium chlorides"

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Fernández-Valverde, Suilma Marisela. "Echange isotopique dans des composes a valence mixte a l'etat solide." Université Louis Pasteur (Strasbourg) (1971-2008), 1986. http://www.theses.fr/1986STR13030.

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Jeng, Gi-Shong, and 鄭吉雄. "Electrocheimcal Studies of Tellurium(IV) chloride and Thallium( I) Chloride in Aluminum Chloride-1-Methyl-3-Ethylimidazolium Chloride Room-Temperature Molten Salts." Thesis, 1997. http://ndltd.ncl.edu.tw/handle/94532647711861107260.

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湯素幸. "X-ray Diffractometer NMR Studies Molecular Structure of Di(1,2-ethanediolato)Tetraphenylporphyrinato Phosphorus(V) Chloride and Methy-tetra(4-pyridyl)Porphyrinato Thallium." Thesis, 1994. http://ndltd.ncl.edu.tw/handle/00756335316600497521.

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Books on the topic "Thallium chlorides"

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Sabharwal, Nikant, Parthiban Arumugam, and Andrew Kelion. Radiopharmaceuticals used in myocardial perfusion scintigraphy. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198759942.003.0008.

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Three radiopharmaceuticals are in routine clinical use in myocardial perfusion scintigraphy: thallium-201 (201Tl) as thallous chloride, technetium-99m (99mTc) sestamibi, and 99mTc tetrofosmin. This chapter covers physiological, imaging, and practical considerations of these radiopharmaceuticals, with detail on the properties and protocols of each explored in detail. Other perfusion tracers not in current clinical use are also listed.
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Blokdijk, G. J. Thallous Chloride Tl-201; Complete Self-Assessment Guide. CreateSpace Independent Publishing Platform, 2018.

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Book chapters on the topic "Thallium chlorides"

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Margaretha, P. "Bromodecarboxylation of Thallium(I) Carboxylates." In Chlorine, Bromine, and Iodine. Georg Thieme Verlag KG, 2007. http://dx.doi.org/10.1055/sos-sd-035-00290.

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KUROSAWA, HIDEO. "DIMETHYLTHALLIUM CHLORIDE AND BIS(TRIMETHYLSILYLMETHYL)THALLIUM CHLORIDE." In Organometallic Syntheses. Elsevier, 1986. http://dx.doi.org/10.1016/b978-0-444-42607-9.50131-5.

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Schmidbaur, H., and A. Schier. "Chlorination Using Thallium(III) Chloride." In Compounds of Groups 12 and 11 (Zn, Cd, Hg, Cu, Ag, Au). Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-003-00530.

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Negishi, E. i., and T. Takahashi. "Formation of Trichloro(η-cyclopentadienyl)zirconium from Thallium(I) Methylcyclopentadienide and Zirconium(IV) Chloride–Bis(tetrahydrofuran) Complex." In Compounds of Groups 7-3 (Mn..., Cr..., V..., Ti..., Sc..., La..., Ac...). Georg Thieme Verlag KG, 2003. http://dx.doi.org/10.1055/sos-sd-002-00933.

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Conference papers on the topic "Thallium chlorides"

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Onodera, T., K. Hitomi, C. Onodera, T. Shoji, and K. Mochizuki. "Characterization of thallium bromide chloride crystals for radiation detectors." In 2011 IEEE Nuclear Science Symposium and Medical Imaging Conference (2011 NSS/MIC). IEEE, 2011. http://dx.doi.org/10.1109/nssmic.2011.6154728.

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