Academic literature on the topic 'Mercury(II) compounds'

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Journal articles on the topic "Mercury(II) compounds"

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Deacon, GB, and GN Stretton. "Organomercury Compounds. XXVII. The Synthesis and Properties of Some Carboxylato- and Carboxy-pyridinylmercurials." Australian Journal of Chemistry 38, no. 3 (1985): 419. http://dx.doi.org/10.1071/ch9850419.

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Decarboxylation of mercuric pyridine-2,3-dicarboxylate in hot dimethyl sulfoxide or hexamethylphosphoramide gives a mixture of 2-carboxylatopyridin-3-ylmercury(II) (major product) and 3- carboxylatopyridin-2-ylmercury(II) (minor product). The mixture reacts ( i ) with acidified halide ions ( Cl - or I-) to yield a mixture of the corresponding carboxypyridinyl ( halogeno )mercury(II) derivatives, (ii) with tribromide ions to give the bromo ( carboxypyridinyl )mercury(ii) complexes, 3-bromopyridine-2-carboxylic acid, and 2-bromopyridine-3- carboxylic acid, and (iii) with iodide ions in hot aqueo
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Bem, E. M., K. Mailer, and C. M. Elson. "Influence of mercury (II), cadmium (II), methylmercury, and phenylmercury on the kinetic properties of rat liver glutathione peroxidase." Canadian Journal of Biochemistry and Cell Biology 63, no. 12 (1985): 1212–16. http://dx.doi.org/10.1139/o85-152.

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The effect of phenylmercury and methylmercury on rat liver glutathione peroxidase (GSH Px) is investigated and compared with that of Hg(II) and with some previously reported results for Cd(II). Analysis of the kinetics of metal binding to the enzyme gives apparent inhibition rate constants: kc = 9.7 mM−1 min−1 for all three mercury compounds and 75 mM−1 min−1 for CdCl2. Glutathione (0.2 mM) protects the enzyme from metal inhibition, decreasing the apparent inhibition rate constants (kc) by 3.6 times for mercury compounds and 4.4 times for CdCl2. K1 for the three mercury compounds is found to b
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Soldin, Željka, Boris-Marko Kukovec, Dubravka Matković-Čalogović, and Zora Popović. "The Solvent Effect on Composition and Dimensionality of Mercury(II) Complexes with Picolinic Acid." Molecules 26, no. 16 (2021): 5002. http://dx.doi.org/10.3390/molecules26165002.

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Three new mercury(II) coordination compounds, {[HgCl(pic)]}n (1), [HgCl(pic)(picH)] (2), and [HgBr(pic)(picH)] (3) (picH = pyridine-2-carboxylic acid, picolinic acid) were prepared by reactions of the corresponding mercury(II) halides and picolinic acid in an aqueous (1) or alcohol–methanol or ethanol (2 and 3) solutions. Two different types of coordination compounds were obtained depending on the solvent used. The crystal structures were determined by the single-crystal X-ray structural analysis. Compound 1 is a one-dimensional (1-D) coordination polymer with mercury(II) ions bridged by chela
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Al-Rubaie, Ali Z., Shaker A. S. Al-Jadaan, Anwar T. Abd Al-Wahed, and Ibraheem A. Raadah. "Synthesis, characterization and biological studies of some new organometallic compounds containing mercury, selenium and tellurium based on p-aminobenzoic acid." Journal of Physics: Conference Series 2063, no. 1 (2021): 012003. http://dx.doi.org/10.1088/1742-6596/2063/1/012003.

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Abstract Ten chalcogen and mercury bearing compounds based on 4-aminobenzoic acid (i.e., (2-amino-5-(ethoxycarbonyl)phenyl)mercury(II) chloride (1), (2-amino-5-(ethoxycarbonyl)phenyl) phenyl selenide (2), (2-amino-5-(ethoxycarbonyl)phenyl) phenyl telluride (3), (4-carboxyphenyl)mercury(II) chloride (4), 4-selenocyanatobenzoic acid (5), 4-tellurocyanatobenzoic acid (6), bis(4-carboxyphenyl) diselenide (7) bis(4-carboxyphenyl) ditelluride (8), bis(4-carboxyphenyl) selenide (9) bis(4-carboxyphenyl) telluride (10) were prepared and characterized by various spectroscopic techniques. All compounds w
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Monperrus, Mathilde, Christophe Pécheyran, and Valérie Bolliet. "Imaging Differential Mercury Species Bioaccumulation in Glass Eels Using Isotopic Tracers and Laser Ablation Inductively Coupled Plasma Mass Spectrometry." Applied Sciences 10, no. 7 (2020): 2463. http://dx.doi.org/10.3390/app10072463.

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Dramatic increases in global mercury pollution require a deeper understanding of specific toxicity mechanisms for mercury compounds in organisms. Despite numerous studies addressing mercury toxicity, the detailed mechanisms underlying its transport and accumulation in fish remain unclear. The aim of this study was to unravel differential uptake pathways for mercury compounds, metabolisation, and sequestration mechanisms in glass eels using techniques able to localize at the tissue and organ levels. A multi isotope image mapping procedure was developed to simultaneously study the uptake and dis
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Öller, Hans-Jürgen, Paul Kiprof, and Hubert Schmidbaur. "Flexible ein-und zweikernige Aralkyl-und Aralkoxyquecksilberverbindungen als Modelle zum Nachweis von Hg(II)-Hg(II)-W echselwirkungen / Flexible Mono-and Dinuclear Aralkyl and Aralkoxy Mercury Compounds for Detection of Hg (II)-Hg (II) Interactions." Zeitschrift für Naturforschung B 47, no. 3 (1992): 333–43. http://dx.doi.org/10.1515/znb-1992-0306.

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The aralkyl and aralkoxy mercury(II) compounds 1-(chloromercury(II)methyl)naphthalene (1), bis[1-naphthylmethyl]mercury(II) (2), 1-naphthyl(1-naphthylmethyl)mercury(II) (3), 1,8-bis[chloromercury(II)methyl]naphthalene (4), methylmercury(II)-benzylate (5), methylmercury( II)-1-naphthylmethylate (6) and bis[methylmercury(II)]μ-1,8-naphthalenediyl-bismethylate (7) have been prepared and characterized by means of NMRspectroscopy, mass spectrometry and elemental analysis. The molecular structure of compound 2 has been determined by single X-ray crystallography. The unit cell of 2 contains two cryst
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Alalam, Nuha, and Salwa Bashir. "Utilizing Schiff's bases for Accurate Determination of Pb(II)and Hg(II) Concentrations in Aqueous Solutions." Oriental Journal Of Chemistry 40, no. 3 (2024): 753–57. http://dx.doi.org/10.13005/ojc/400316.

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In this study, the effectiveness of the synthesized Schiff's base, N,N-bis(acetonylacetone)-p-aminoacetophenone-o-phenylene diamine, in detecting environmental pollutants, including mercury (Hg(II)) and lead (Pb(II)), using UV/VIS spectrophotometry, was evaluated. Acetonitrile was chosen as the optimal solvent. Emphasis was placed on reaction conditions, including micelle effects, to enhance results. The study underscores the importance of Schiff's base compounds for environmental monitoring, particularly in detecting mercury and lead pollution.
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Akbarzadeh, Abolfath, Reza Soleymani, Milad Taheri, Halimeh Rajabzadeh, and Mehdi Daryani. "Synthesis and Studies of Potential Antifungal and Antibacterial Agents New Aryl Thiazolyl Mercury (II) Derivatives Compounds." Journal of Chemistry 2013 (2013): 1–6. http://dx.doi.org/10.1155/2013/186531.

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Combination of mercaptothiazoles and mercury phenyl chloride synthesized some new compounds of thiazoles. Firstly some mercaptothiazoles with different sorts have been synthesized, and then synthesized compounds were reacted with different mercury phenyl chloride structures. At last, each of these synthesized compounds was purified. Consequently, these structures were recrystallized using oil ether. Forming product through chromatogram (TLC) and combination ofRfwith other compound'sRfof were identified, and their purity percent was recognized. The1H-NMR and other methods like FT-IR and mass sp
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Soldin, Željka, Boris-Marko Kukovec, Dubravka Matković-Čalogović, and Zora Popović. "Hydrogen-Bonded Frameworks of Mercury(II) Complexes with Pyridinedicarboxylic Acids." Australian Journal of Chemistry 71, no. 6 (2018): 455. http://dx.doi.org/10.1071/ch18146.

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Three novel mercury(ii) coordination compounds, [HgCl(2,4-pydcH2)(2,4-pydcH)]·2H2O (1) and [HgCl(2,6-pydcH)(H2O)]·3H2O (2) that exhibit hydrogen-bonded 3D frameworks, and [Hg(2,6-pydcH)2]·2H2O (3), exhibiting only hydrogen-bonded 1D chains (2,4-pydcH2 = pyridine-2,4-dicarboxylic acid; 2,6-pydcH2 = pyridine-2,6-dicarboxylic acid), were prepared in the reactions of the corresponding pyridinedicarboxylic acid with mercury(ii) chloride or mercury(ii) acetate. Compounds 1–3 were prepared by conventional solution synthesis. Only the hydrogen-bonded 1D chain of 3 was robust enough to be prepared by m
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Janzen, Michael C., Michael C. Jennings, and Richard J. Puddephatt. "Mechanism of Oxidative Addition of Mercury(II) Compounds to Platinum(II)." Inorganic Chemistry 40, no. 8 (2001): 1728–29. http://dx.doi.org/10.1021/ic001145+.

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Dissertations / Theses on the topic "Mercury(II) compounds"

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Liu, Li. "The chemistry of luminescent mercury (II) alkynyl complexes and their platinum (II) and gold (I) counterparts." HKBU Institutional Repository, 2005. http://repository.hkbu.edu.hk/etd_ra/627.

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Bublitz, Fabrício. "Síntese e Caracterização de Novos Compostos Derivados de Bis(4-Aminobenzenoselenolato) de Mercúrio(II) e Bis(4-N,N-Dimetil-aminobenzenoselenolato) de Mercúrio(II)." Universidade Federal de Santa Maria, 2014. http://repositorio.ufsm.br/handle/1/10585.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico<br>This work presents the synthesis and structural analysis of the first compounds obtained through the use of the building blocks Mercury(II) bis(4-Aminobenzeneselenolate) Hg(SeC6H4NH2-4)2 and Mercury(II) bis(4-N,N-Dimethyl-Aminobenzeneselenolate) Hg(SeC6H4NMe2-4)2. Firstly, a synthetic procedure was adapted for the diaryl disselenides (4-H2NC6H4Se)2 (1a) e (4-Me2NC6H4Se)2 (1b), whose crystalline structures are been described here for the first time. From these disselenides, it were possible to obtain the mercury(II) selenola
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Fontaine, Christophe. "Hétéroépitaxie par jets moléculaires de semiconducteurs II-VI." Grenoble 1, 1986. http://www.theses.fr/1986GRE10062.

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Etude de l'heteroepitaxie de cdte, cd::(1-x)zn::(x)te et cd::(x)hg::(1-x)te sur cdznte, insb et gaas (001) et (111) et des differents parametres qui gouvernent la qualite cristalline. Il s'avere que la croissance (001) est meilleure que la croissance (111). L'interet d'une interface graduelle est demontre a fort desaccord de maille. A faible desaccord de mailles les contraintes dans les couches epitaxiques ont ete mesurees. Dans ces conditions experimentales, la relaxatioon des couches est gouvernee par un mecanisme de generation de dislocations et non par l'activation thermique des dislocatio
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Lusson, Alain. "Preparation par epitaxie en phase liquide et etude physique des solutions solides cd : :(x)hg::(1-x)te 0,5 <- x <-1." Paris 6, 1987. http://www.theses.fr/1987PA066497.

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Dans le but d'etudier un materiau utilisable pour la fabrication de detecteurs pour les telecommunications par fibre optique a 1,3 et 1,55mu m, des echantillons de cd::(x) hg::(1-x) te(0,5 x 1) ont ete prepares par epitaxie en phase liquide en tube ouvert. Diverses methodes de caracterisation (microsonde electronique, topographie rx, effet hall, sonde ionique. . . ) ont montre la bonne qualite des couches. Le dopage effectue au cours de la croissance par in et cu a ete aborde. Etude des effets d'alliage dans cdhgte par photoluminescence
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Mordenti, Stéphane. "Etude magnéto-optique dans le proche infrarouge de systèmes bidimensionnels élaborés à partir d'alliages II-VI ou III-V." Université Joseph Fourier (Grenoble), 1997. http://www.theses.fr/1997GRE10127.

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Ce memoire presente des etudes magneto-optiques realisees dans le proche infrarouge de systemes bidimensionnels construits a partir des alliages cdhgte ou gainas. Les structures symetriques cd#yhg#1#-#yte/cd#xhg#1#-#yte ont ete etudiees sous champ magnetique (0,20 t) en luminescence et en abosorption. Les variations de formes quadratiques de la position des raies de luminescence sous champ montrent que la transition observee dans ce type de systemes fait intervenir une forte energie de liaison entre les porteurs des bandes de conduction et de valence. Nous l'avons d'ailleurs interpretee comme
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BOUDON, REYS CORINNE. "Etude electrochimique et applications analytiques des proprietes redox de cryptates d'ammonium et de mercure." Université Louis Pasteur (Strasbourg) (1971-2008), 1987. http://www.theses.fr/1987STR13137.

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Silga, Matthias. "Elaboration de monocristaux de hgi::(2) alpha par la methode du flux force : application a la detection de rayonnements X gamma et alpha." Clermont-Ferrand 2, 1986. http://www.theses.fr/1986CLF21009.

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Elaboration de monocristaux hg1::(2)-alpha en vue de leur utilisation comme detecteurs de rayonnements. La purification du materiau de base, le controle du transport de matiere, le controle de la sursaturation a l'interieur des ampoules de croissance, la monogermination et l'etude de la morphologie du cristal sont traites en relation avec les proprietes de detection. Une approche theorique par simulation monte-carlo de la reponse d'un detecteur hgi::(2) a ete faite
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Books on the topic "Mercury(II) compounds"

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U.S. Workshop on the Physics and Chemistry of Mercury Cadmium Telluride (8th 1989 San Diego, Calif.). Proceedings of the 1989 U.S. Workshop on the Physics and Chemistry of Mercury Cadmium Telluride and Related II-VI Compounds, 3-5 October 1989, San Diego, California. Edited by Schaake Herbert F, Center for Night Vision & Electro-Optics (U.S.), and American Vacuum Society. Published for the American Vacuum Society by the American Institute of Physics, 1990.

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U.S. Workshop on the Physics and Chemistry of Mercury Cadmium Telluride (10th 1991 Dallas, Texas). Proceedings of the 1991 U.S. Workshop on the Physics and Chemistry of Mercury Cadmium Telluride and Other II-VI Compounds, 8-10 October 1991, Dallas, Texas ... Edited by Seiler David G and American Vacuum Society. American Institute of Physics for the American Vacuum Society, 1992.

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Capper, Peter. Narrow-Gap II-VI Compounds for Optoelectronic and Electromagnetic Applications. Springer London, Limited, 2012.

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Book chapters on the topic "Mercury(II) compounds"

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Chipperfield, J. R. "In Mercury(I) Compounds from Mercury(II) Compounds." In Inorganic Reactions and Methods. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470145289.ch147.

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Lindberg, S. E., S. Brooks, C. J. Lin, et al. "Formation of Reactive Gaseous Mercury in the Arctic: Evidence of Oxidation of Hg° to Gas-Phase Hg-II Compounds after Arctic Sunrise." In Air-Surface Exchange of Gases and Particles (2000). Springer Netherlands, 2001. http://dx.doi.org/10.1007/978-94-010-9026-1_29.

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Gabel, D., and M. B. El-Zaria. "From Borohydrides and Mercury(II) Cyanide." In Boron Compounds. Georg Thieme Verlag KG, 2005. http://dx.doi.org/10.1055/sos-sd-006-00506.

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Singer, R. D. "From Bis(triorganosilyl)mercury(II) Compounds." In Compounds of Groups 15 (As, Sb, Bi) and Silicon Compounds. Georg Thieme Verlag KG, 2002. http://dx.doi.org/10.1055/sos-sd-004-00274.

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Meyer, J. R., C. A. Hoffman, and F. J. Bartoli. "Novel Electronic Processes in Mercury-Based Superlattices." In II-VI Semiconductor Compounds. WORLD SCIENTIFIC, 1993. http://dx.doi.org/10.1142/9789814439770_0013.

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North, M. "Using Silver(I) or Mercury(II) Cyanide." In Compounds of Groups 15 (As, Sb, Bi) and Silicon Compounds. Georg Thieme Verlag KG, 2002. http://dx.doi.org/10.1055/sos-sd-004-00543.

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Kitching, W., and M. Glenn. "Decarboxylation of Mercury(II) Carboxylates." 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-003-00260.

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Hemeon, I., and R. D. Singer. "Tris(trimethylsilyl)aluminum from Bis(trimethylsilyl)mercury(II)." In Compounds of Groups 15 (As, Sb, Bi) and Silicon Compounds. Georg Thieme Verlag KG, 2002. http://dx.doi.org/10.1055/sos-sd-004-00251.

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Saito, S. "Aluminum Treated with Mercury(II) Chloride." In Compounds of Groups 13 and 2 (Al, Ga, In, Tl, Be...Ba). Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-007-00005.

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Kitching, W., and M. Glenn. "Electrophilic Substitution by Mercury(II) Salts." 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-003-00220.

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Conference papers on the topic "Mercury(II) compounds"

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KWAK, A. "Application of Zinc-Silver Impregnated Activated Carbons in Removal of Lead(II) and Mercury(II) Compounds from Groundwater." In Quality Production Improvement and System Safety. Materials Research Forum LLC, 2023. http://dx.doi.org/10.21741/9781644902691-9.

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Abstract. Nowadays activated carbon is a material generating great interest, as it is characterized by a vast surface area due to a high number of pores in its structure. Therefore, the main purpose behind its use is the filtration of impurities from air and water that can be adsorbed with high efficiency. Activated carbon can be easily modified as well. The paper describes activated carbon modification with copper-, manganese-, silver- and zinc salts. The effects of the selected impregnates and their concentrations were examined. The products included 5 adsorbent samples: four universal adsor
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