Page last updated: 2024-08-22

ruthenium and cerium

ruthenium has been researched along with cerium in 25 studies

Research

Studies (25)

TimeframeStudies, this research(%)All Research%
pre-19905 (20.00)18.7374
1990's0 (0.00)18.2507
2000's5 (20.00)29.6817
2010's14 (56.00)24.3611
2020's1 (4.00)2.80

Authors

AuthorsStudies
Terada, K1
Kourím, V; Vojtĕch, O1
Kolb, W1
Jelisavcić, O; Lulić, S; Strohal, P1
Hurst, JK; Koike, T; Yamada, H1
BULDAKOV, LA; MOSKALEV, IuI; SEMENOV, DI1
Bae, ZU; Choi, KH; Karim, MM; Lee, HS; Lee, SH1
Mokhtari, A; Rezaei, B1
Wang, JB; Wang, W; Yang, SX; Zhu, WP1
Genêt, JP; Meng, Q; Ratovelomanana-Vidal, V; Sun, Y; Zhang, Z1
Barbier, J; Gaálová, J; Rossignol, S1
Duan, L; Sun, L; Tong, L; Xu, Y1
Åkermark, B; Åkermark, T; Bäckvall, JE; Hansson, Ö; Ilag, L; Johnston, EV; Kärkäs, MD; Karlsson, EA; Lee, BL; Shariatgorji, M1
Fukuzumi, S; Ikemura, K; Kojima, T; Nakayama, K; Ogura, T1
Grudzien, RM; Ivie, JA; Radaram, B; Reibenspies, JH; Singh, WM; Webster, CE; Zhao, X1
Li, J; Liu, H; Liu, Y; Ma, J1
Britt, RD; Hurst, JK; Knorr, FJ; Lymar, SV; McHale, JL; Stull, JA1
Bao, H; Guan, X; Huang, Y; Qiao, J; Sun, B; Wang, H; Zhang, J; Zhou, G1
Ichiyama, K; Ikeda, R; Kuroda, N; Nakashima, K; Tabuchi, N; Wada, M1
Hartwig, S; Hoffmann, RD; Huang, YK; Mydosh, JA; Ouladdiaf, B; Petříček, V; Pöttgen, R; Prokeš, K; Ressouche, E1
Asada, S; Hatae, T; Honjo, M; Iwata, K; Kanda, N; Koshiyama, T; Kuga, R; Masaoka, S; Ohba, M; Okamura, M; Tsuji, Y; Yoshida, M1
Kondo, M; Masaoka, S; Sakai, K; Torii, S; Yoshida, M1
Alam, SM; Wabaidur, SM1
Fu, Y; He, H; He, L; Ren, Y; Tsang, SCE; Yue, B1
Chen, SM; Sakthivel, R; Sangili, A1

Reviews

1 review(s) available for ruthenium and cerium

ArticleYear
Methods of fission product separation from liquid radioactive wastes.
    Atomic energy review, 1974, Volume: 12, Issue:2

    Topics: Cerium; Cerium Isotopes; Cesium; Chemical Precipitation; Chromatography; Ion Exchange; Krypton; Methods; Niobium; Nuclear Fission; Palladium; Promethium; Radioactive Waste; Radioisotopes; Rhodium; Ruthenium; Strontium; Strontium Radioisotopes; Technetium; Xenon; Zirconium

1974

Other Studies

24 other study(ies) available for ruthenium and cerium

ArticleYear
[Application of strong phosphoric acid to radiochemistry (author's transl)].
    Radioisotopes, 1977, Volume: 26, Issue:3

    Topics: Cerium; Chromium; Electricity; Ferrous Compounds; Iodates; Methods; Minerals; Osmium; Phosphoric Acids; Radioactive Tracers; Radiochemistry; Radioisotopes; Ruthenium; Selenium; Solubility; Uranium

1977
Tungsten-181 and other short lived fission products in ground level air in North Germany and North Norway.
    Nature, 1971, Aug-20, Volume: 232, Issue:5312

    Topics: Air Pollution, Radioactive; Cerium; Cesium; Germany, East; Niobium; Norway; Nuclear Fission; Radiometry; Ruthenium; Tungsten; Zirconium

1971
The loss of cerium, cobalt, manganese, protactinium, ruthenium and zinc during dry ashing of biological material.
    The Analyst, 1969, Volume: 94, Issue:121

    Topics: Cerium; Cerium Isotopes; Cobalt; Cobalt Isotopes; Hot Temperature; Manganese; Mollusca; Protactinium; Ruthenium; Zinc; Zinc Isotopes

1969
Water exchange rates in the diruthenium mu-oxo ion cis,cis-[(bpy)(2)Ru(OH(2))](2)O(4+).
    Journal of the American Chemical Society, 2001, Dec-26, Volume: 123, Issue:51

    Topics: 2,2'-Dipyridyl; Cations; Cerium; Kinetics; Organometallic Compounds; Oxidation-Reduction; Oxygen; Ruthenium; Spectrum Analysis, Raman; Water

2001
[The distribution of cerium and ruthenium in the organs of the rat following their administration by inhalation].
    Meditsinskaia radiologiia, 1960, Volume: 5

    Topics: Animals; Cerium; Elements; Rats; Ruthenium

1960
A batch chemiluminescence determination of enoxacin using a tris-(1,10-phenanthroline)ruthenium(II)-cerium(IV) system.
    Journal of fluorescence, 2006, Volume: 16, Issue:4

    Topics: Anti-Infective Agents; Cerium; Enoxacin; Humans; Kinetics; Luminescent Measurements; Molecular Structure; Phenanthrolines; Ruthenium; Sensitivity and Specificity; Sulfuric Acids; Tablets

2006
A simple and rapid flow injection chemiluminescence determination of cysteine with Ru(phen)3(2+)-Ce(IV) system.
    Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 2007, Volume: 66, Issue:2

    Topics: Cerium; Cysteine; Flow Injection Analysis; Luminescent Measurements; Phenol; Reference Standards; Ruthenium; Sensitivity and Specificity

2007
[Catalytic wet air oxidation of phenol with Ru/ZrO2-CeO2 catalyst].
    Huan jing ke xue= Huanjing kexue, 2007, Volume: 28, Issue:7

    Topics: Catalysis; Cerium; Oxidation-Reduction; Phenol; Ruthenium; Waste Disposal, Fluid; Zirconium

2007
CeCl3.7H2O: an effective additive in Ru-catalyzed enantioselective hydrogenation of aromatic alpha-ketoesters.
    The Journal of organic chemistry, 2008, May-16, Volume: 73, Issue:10

    Topics: Catalysis; Cerium; Esters; Hydrogen; Hydrogenation; Ketones; Molecular Structure; Organometallic Compounds; Ruthenium; Stereoisomerism; Water

2008
Ruthenium versus platinum on cerium materials in wet air oxidation of acetic acid.
    Journal of hazardous materials, 2010, Sep-15, Volume: 181, Issue:1-3

    Topics: Acetic Acid; Air; Catalysis; Cerium; Oxidation-Reduction; Oxides; Particle Size; Platinum; Ruthenium

2010
Ce(IV)- and light-driven water oxidation by [Ru(terpy)(pic)3]2+ analogues: catalytic and mechanistic studies.
    ChemSusChem, 2011, Feb-18, Volume: 4, Issue:2

    Topics: Benzimidazoles; Catalysis; Cations; Cerium; Electrochemistry; Hydrogen-Ion Concentration; Ligands; Light; Organometallic Compounds; Oxidation-Reduction; Perchlorates; Photochemistry; Pyridines; Ruthenium; Spectrophotometry, Ultraviolet; Water

2011
Light-induced water oxidation by a Ru complex containing a bio-inspired ligand.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2011, Jul-04, Volume: 17, Issue:28

    Topics: Cerium; Ligands; Light; Molecular Structure; Oxidation-Reduction; Oxygen; Photochemistry; Ruthenium; Water

2011
Formation of a ruthenium(IV)-oxo complex by electron-transfer oxidation of a coordinatively saturated ruthenium(II) complex and detection of oxygen-rebound intermediates in C-H bond oxygenation.
    Journal of the American Chemical Society, 2011, Aug-03, Volume: 133, Issue:30

    Topics: Cerium; Crystallography, X-Ray; Electron Transport; Models, Molecular; Molecular Structure; Organometallic Compounds; Oxidation-Reduction; Oxygen; Ruthenium; Stereoisomerism; Water

2011
Water oxidation by mononuclear ruthenium complexes with TPA-based ligands.
    Inorganic chemistry, 2011, Nov-07, Volume: 50, Issue:21

    Topics: Biomimetics; Cerium; Crystallography, X-Ray; Electrochemistry; Hydrogen; Ligands; Molecular Structure; Organometallic Compounds; Oxidants, Photochemical; Oxidation-Reduction; Oxygen; Photosynthesis; Pyridines; Ruthenium; Thermodynamics; Water

2011
Preparation and electrochemical properties of Ce-Ru-SnO2 ternary oxide anode and electrochemical oxidation of nitrophenols.
    Journal of hazardous materials, 2012, Apr-30, Volume: 213-214

    Topics: Biological Oxygen Demand Analysis; Cerium; Electrochemistry; Electrodes; Hydrogen Peroxide; Hydroxyl Radical; Hypochlorous Acid; Nitrophenols; Oxidants; Oxidation-Reduction; Ruthenium; Tin Compounds; X-Ray Diffraction

2012
Anomalous reactivity of ceric nitrate in ruthenium "blue dimer"-catalyzed water oxidation.
    Journal of the American Chemical Society, 2012, Dec-12, Volume: 134, Issue:49

    Topics: Catalysis; Cerium; Dimerization; Nitrates; Oxidation-Reduction; Ruthenium; Water

2012
Ruthenium nanoparticles supported on CeO2 for catalytic permanganate oxidation of butylparaben.
    Environmental science & technology, 2013, Nov-19, Volume: 47, Issue:22

    Topics: Catalysis; Cerium; Environment; Hydrogen-Ion Concentration; Kinetics; Manganese Compounds; Minerals; Nanoparticles; Oxidation-Reduction; Oxides; Parabens; Ruthenium; X-Ray Absorption Spectroscopy

2013
Determination of folates by HPLC-chemiluminescence using a ruthenium(II)-cerium(IV) system, and its application to pharmaceutical preparations and supplements.
    Luminescence : the journal of biological and chemical luminescence, 2014, Volume: 29, Issue:7

    Topics: Cerium; Chromatography, High Pressure Liquid; Folic Acid; Luminescence; Pharmaceutical Preparations; Ruthenium

2014
(3 + 1)-dimensional crystal and antiferromagnetic structures in CeRuSn.
    Journal of physics. Condensed matter : an Institute of Physics journal, 2014, Mar-26, Volume: 26, Issue:12

    Topics: Alloys; Cerium; Crystallization; Magnetic Fields; Materials Testing; Molecular Conformation; Ruthenium; Tin

2014
Regulation of a cerium(IV)-driven O₂ evolution reaction using composites of liposome and lipophilic ruthenium complexes.
    Dalton transactions (Cambridge, England : 2003), 2015, Sep-14, Volume: 44, Issue:34

    Topics: Catalysis; Cerium; Electrochemistry; Equipment Design; Ligands; Liposomes; Nitrates; Oxidation-Reduction; Oxygen; Phospholipids; Ruthenium; Solar Energy; Surface Properties; Water

2015
Oxygen Evolution Catalyzed by a Mononuclear Ruthenium Complex Bearing Pendant SO3(-) Groups.
    Angewandte Chemie (International ed. in English), 2015, Jun-26, Volume: 54, Issue:27

    Topics: 2,2'-Dipyridyl; Busulfan; Catalysis; Cerium; Models, Molecular; Organometallic Compounds; Oxidation-Reduction; Oxygen; Pyridines; Ruthenium; Sulfur Oxides; Water

2015
CL sensitisation of tris-(bipyridyl) ruthenium (II) - cerium (IV) reaction system by AgNPs for determination of GFX.
    IET nanobiotechnology, 2018, Volume: 12, Issue:6

    Topics: 2,2'-Dipyridyl; Biosensing Techniques; Cerium; Drug Synergism; Flow Injection Analysis; Gatifloxacin; Luminescence; Metal Nanoparticles; Particle Size; Photosensitizing Agents; Ruthenium; Silver; Spectrophotometry, Ultraviolet; Tablets

2018
Morphology-Dependent Catalytic Activity of Ru/CeO₂ in Dry Reforming of Methane.
    Molecules (Basel, Switzerland), 2019, Feb-01, Volume: 24, Issue:3

    Topics: Adsorption; Carbon Dioxide; Catalysis; Cerium; Chemistry Techniques, Synthetic; Hydrogen; Methane; Nanoparticles; Oxidation-Reduction; Oxygen; Ruthenium

2019
Cost-effective single-step synthesis of flower-like cerium-ruthenium-sulfide for the determination of antipsychotic drug trifluoperazine in human urine samples.
    Analytica chimica acta, 2020, Sep-22, Volume: 1131

    Topics: Antipsychotic Agents; Cerium; Cost-Benefit Analysis; Electrodes; Humans; Reproducibility of Results; Ruthenium; Sulfides; Trifluoperazine

2020
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