Book
Physical Chemistry Chemical Physics, ISSN 1463-9076, 07/2011, Volume 13, Issue 28, pp. 12940 - 12958
The gas-phase thermochemistry of actinide monosulfides, AnS, was investigated experimentally and theoretically. Fourier transform ion cyclotron resonance mass...
INFRARED-SPECTRA | DIPOLE-MOMENT | CORRELATED MOLECULAR CALCULATIONS | TRANSITION-METAL | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | GUIDED ION-BEAM | CHEMISTRY, PHYSICAL | DISSOCIATION-ENERGIES | QUASI-RELATIVISTIC DFT | ROOM-TEMPERATURE KINETICS | GAUSSIAN-BASIS SETS | EXCITED-STATES | Carbon Dioxide - chemistry | Oxidants - chemistry | Oxides - chemistry | Uranium Compounds - chemistry | Sulfides - chemistry | Actinoid Series Elements - chemistry | Protactinium - chemistry | Alkadienes - chemistry | Gases - chemistry | Thermodynamics | Algorithms | Fourier Analysis | Thorium Compounds - chemistry | Actinium - chemistry | Carbon Disulfide - chemistry | Sulfur Oxides - chemistry | Curium - chemistry | Neptunium - chemistry | Plutonium - chemistry | Americium - chemistry | Mass Spectrometry - methods | Cations, Monovalent - chemistry | Actinides | Ionization | Plutonium | Energy of dissociation | Bonding | Dissociation energy | Heat of formation | Free energy | Chemical Sciences | Other
INFRARED-SPECTRA | DIPOLE-MOMENT | CORRELATED MOLECULAR CALCULATIONS | TRANSITION-METAL | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | GUIDED ION-BEAM | CHEMISTRY, PHYSICAL | DISSOCIATION-ENERGIES | QUASI-RELATIVISTIC DFT | ROOM-TEMPERATURE KINETICS | GAUSSIAN-BASIS SETS | EXCITED-STATES | Carbon Dioxide - chemistry | Oxidants - chemistry | Oxides - chemistry | Uranium Compounds - chemistry | Sulfides - chemistry | Actinoid Series Elements - chemistry | Protactinium - chemistry | Alkadienes - chemistry | Gases - chemistry | Thermodynamics | Algorithms | Fourier Analysis | Thorium Compounds - chemistry | Actinium - chemistry | Carbon Disulfide - chemistry | Sulfur Oxides - chemistry | Curium - chemistry | Neptunium - chemistry | Plutonium - chemistry | Americium - chemistry | Mass Spectrometry - methods | Cations, Monovalent - chemistry | Actinides | Ionization | Plutonium | Energy of dissociation | Bonding | Dissociation energy | Heat of formation | Free energy | Chemical Sciences | Other
Journal Article
Journal of Physical Chemistry A, ISSN 1089-5639, 08/2015, Volume 119, Issue 34, pp. 9178 - 9188
Actinyl(VI, V) (An = U, Np and Pu) complexes of the recently reported hybrid macrocycle, cyclo[1]furan[1]pyridine[4]pyrrole (denoted as H4L), have been studied...
CALIXARENE | NEPTUNYL | CROWN-ETHER COMPLEXES | EXPANDED PORPHYRIN | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | X-RAY | CHEMISTRY | CHEMISTRY, PHYSICAL | URANYL COMPLEX | ACTINIDE ELEMENTS | ELECTRON LOCALIZATION | CATIONS | Macrocyclic Compounds - chemistry | Pyridines - chemistry | Solvents - chemistry | Molecular Conformation | Models, Molecular | Quantum Theory | Furans - chemistry | Neptunium - chemistry | Water - chemistry | Pyrroles - chemistry | Ligands | Organometallic Compounds - chemistry | Plutonium - chemistry | Uranium - chemistry | Methylene Chloride - chemistry | Electrons | Density functionals | Actinide elements | Usage | Research | Chemical properties | Pyrrole | Pyridines | Macrocyclic compounds | Pyrroles | Density functional theory | Formations | Cations | Selectivity | Plutonium | Density
CALIXARENE | NEPTUNYL | CROWN-ETHER COMPLEXES | EXPANDED PORPHYRIN | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | X-RAY | CHEMISTRY | CHEMISTRY, PHYSICAL | URANYL COMPLEX | ACTINIDE ELEMENTS | ELECTRON LOCALIZATION | CATIONS | Macrocyclic Compounds - chemistry | Pyridines - chemistry | Solvents - chemistry | Molecular Conformation | Models, Molecular | Quantum Theory | Furans - chemistry | Neptunium - chemistry | Water - chemistry | Pyrroles - chemistry | Ligands | Organometallic Compounds - chemistry | Plutonium - chemistry | Uranium - chemistry | Methylene Chloride - chemistry | Electrons | Density functionals | Actinide elements | Usage | Research | Chemical properties | Pyrrole | Pyridines | Macrocyclic compounds | Pyrroles | Density functional theory | Formations | Cations | Selectivity | Plutonium | Density
Journal Article
Chemical Reviews, ISSN 0009-2665, 09/2017, Volume 117, Issue 17, p. 11460
Fifty years have passed since the foundation of organometallic neptunium chemistry, and yet only a handful of complexes have been reported, and even fewer have...
Radioactive materials | Chemistry | Uranium | Radiochemical analysis | Metals | Chemical bonds | Ligands | Plutonium | Chemical elements | Neptunium | Bonding | Radioactivity
Radioactive materials | Chemistry | Uranium | Radiochemical analysis | Metals | Chemical bonds | Ligands | Plutonium | Chemical elements | Neptunium | Bonding | Radioactivity
Journal Article
Chemical Communications, ISSN 1359-7345, 10/2011, Volume 47, Issue 39, pp. 10874 - 10885
The use of molten boric acid as a reactive flux for synthesizing actinide borates has been developed in the past two years providing access to a remarkable...
URANIUM | POLYHEDRON GEOMETRIES | HELLANDITE-GROUP | NUCLEAR-WASTE | PLUTONIUM | CRYSTAL-STRUCTURE | CATIONIC FRAMEWORK | NEPTUNIUM | BOND-VALENCE PARAMETERS | THORIUM BORATE | CHEMISTRY, MULTIDISCIPLINARY | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly) | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
URANIUM | POLYHEDRON GEOMETRIES | HELLANDITE-GROUP | NUCLEAR-WASTE | PLUTONIUM | CRYSTAL-STRUCTURE | CATIONIC FRAMEWORK | NEPTUNIUM | BOND-VALENCE PARAMETERS | THORIUM BORATE | CHEMISTRY, MULTIDISCIPLINARY | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly) | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
Journal Article
Journal of Hazardous Materials, ISSN 0304-3894, 12/2012, Volume 243, pp. 1 - 18
â–º data of Pu, U, Np, Am and Tc onto Fe (hydr)oxides under different conditions. â–º Molecular-level speciation of Pu, U, Np, and Am sorbed onto Fe (hydr)oxides....
Sorption | Radionuclides | Distribution coefficient | Fe (hydr)oxides | Molecular mechanisms | HYDROUS FERRIC-OXIDE | HEMATITE ALPHA-FE2O3 | CORROSION PRODUCTS | IRON-OXIDES | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | REACTIVE TRANSPORT | SURFACE COMPLEXATION | URANIUM(VI) ADSORPTION | GOETHITE ALPHA-FEOOH | NEPTUNIUM(V) SORPTION | HUMIC-ACID | Hydroxides - chemistry | Iron - chemistry | Ferric Compounds - chemistry | Plutonium - isolation & purification | Soil - analysis | Radioactive Waste | Americium - isolation & purification | Elements, Radioactive - chemistry | Neptunium - isolation & purification | Ferric Compounds - isolation & purification | Neptunium - chemistry | Hydroxides - isolation & purification | Plutonium - chemistry | Uranium - chemistry | Uranium - isolation & purification | Americium - chemistry | Elements, Radioactive - isolation & purification | Technetium - chemistry | Technetium - isolation & purification | Oxides | Humic acid | Index Medicus
Sorption | Radionuclides | Distribution coefficient | Fe (hydr)oxides | Molecular mechanisms | HYDROUS FERRIC-OXIDE | HEMATITE ALPHA-FE2O3 | CORROSION PRODUCTS | IRON-OXIDES | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | REACTIVE TRANSPORT | SURFACE COMPLEXATION | URANIUM(VI) ADSORPTION | GOETHITE ALPHA-FEOOH | NEPTUNIUM(V) SORPTION | HUMIC-ACID | Hydroxides - chemistry | Iron - chemistry | Ferric Compounds - chemistry | Plutonium - isolation & purification | Soil - analysis | Radioactive Waste | Americium - isolation & purification | Elements, Radioactive - chemistry | Neptunium - isolation & purification | Ferric Compounds - isolation & purification | Neptunium - chemistry | Hydroxides - isolation & purification | Plutonium - chemistry | Uranium - chemistry | Uranium - isolation & purification | Americium - chemistry | Elements, Radioactive - isolation & purification | Technetium - chemistry | Technetium - isolation & purification | Oxides | Humic acid | Index Medicus
Journal Article
Chemical Science, ISSN 2041-6520, 03/2017, Volume 8, Issue 4, pp. 2553 - 2561
Neptunium complexes in the formal oxidation states II, III, and IV supported by cyclopentadienyl ligands are explored, and significant differences between Np...
Reduction | Valence | Actinides | Ligands | Derivatives | Neptunium | Adducts | Crystal structure
Reduction | Valence | Actinides | Ligands | Derivatives | Neptunium | Adducts | Crystal structure
Journal Article
The Journal of Physical Chemistry B, ISSN 1520-6106, 12/2016, Volume 120, Issue 49, pp. 12643 - 12649
Multiscale modeling has been used to quantitatively reevaluate the radiation chemistry of neptunium in a range of aerated nitric acid solutions (0.1–6.0 mol...
TBP EXTRACTION SYSTEM | MECHANISM | CATALYZED OXIDATION | PULSE-RADIOLYSIS | ELECTRONS | KINETICS | GAMMA-RADIOLYSIS | EQUILIBRIUM | CHEMISTRY, PHYSICAL | SIMULATION | AQUEOUS-SOLUTION | Radiation chemistry | Usage | Research | Chemical properties | Aqueous solution reactions | Nitric acid | free radicals | neptunium | fuel cycle | radiation chemistry | NUCLEAR FUEL CYCLE AND FUEL MATERIALS
TBP EXTRACTION SYSTEM | MECHANISM | CATALYZED OXIDATION | PULSE-RADIOLYSIS | ELECTRONS | KINETICS | GAMMA-RADIOLYSIS | EQUILIBRIUM | CHEMISTRY, PHYSICAL | SIMULATION | AQUEOUS-SOLUTION | Radiation chemistry | Usage | Research | Chemical properties | Aqueous solution reactions | Nitric acid | free radicals | neptunium | fuel cycle | radiation chemistry | NUCLEAR FUEL CYCLE AND FUEL MATERIALS
Journal Article
1959, 145
Book
Inorganic Chemistry, ISSN 0020-1669, 03/2011, Volume 50, Issue 6, pp. 2527 - 2533
U(VI), Np(VI), and Pu(VI) borates with the formula AnO2[B8O11(OH)4] (An = U, Np, Pu) have been prepared via the reactions of U(VI) nitrate, Np(VI) perchlorate,...
NUCLEAR-WASTE | URANYL | NEPTUNYL | MINERALS | STABILITY | STRUCTURAL-CHARACTERIZATION | CATIONIC FRAMEWORK | BOND-VALENCE PARAMETERS | CRYSTAL-CHEMISTRY | INSIGHTS | CHEMISTRY, INORGANIC & NUCLEAR | Neptunium - chemistry | Models, Molecular | Crystallography, X-Ray | Plutonium - chemistry | Anions - chemistry | Uranium - chemistry | Borates - chemistry | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly) | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
NUCLEAR-WASTE | URANYL | NEPTUNYL | MINERALS | STABILITY | STRUCTURAL-CHARACTERIZATION | CATIONIC FRAMEWORK | BOND-VALENCE PARAMETERS | CRYSTAL-CHEMISTRY | INSIGHTS | CHEMISTRY, INORGANIC & NUCLEAR | Neptunium - chemistry | Models, Molecular | Crystallography, X-Ray | Plutonium - chemistry | Anions - chemistry | Uranium - chemistry | Borates - chemistry | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly) | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 07/2012, Volume 51, Issue 14, pp. 7741 - 7748
Aqueous complexation of Th(IV), U(IV), Np(IV), Pu(III/IV), and Ce(III/IV) with DTPA was studied by potentiometry, absorption spectrophotometry, and cyclic...
EXTRACTION | EQUILIBRIUM-CONSTANTS | LANTHANIDE(III) | DECORPORATION | SPECIATION | STABILITY | AMINOPOLYACETIC ACIDS | ACTINIDES | EXCHANGE | IONIZATION MASS-SPECTROMETRY | CHEMISTRY, INORGANIC & NUCLEAR | Thermodynamics | Pentetic Acid - chemistry | Thorium - chemistry | Electrochemical Techniques | Cerium - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Water - chemistry | Organometallic Compounds - chemistry | Plutonium - chemistry | Uranium - chemistry
EXTRACTION | EQUILIBRIUM-CONSTANTS | LANTHANIDE(III) | DECORPORATION | SPECIATION | STABILITY | AMINOPOLYACETIC ACIDS | ACTINIDES | EXCHANGE | IONIZATION MASS-SPECTROMETRY | CHEMISTRY, INORGANIC & NUCLEAR | Thermodynamics | Pentetic Acid - chemistry | Thorium - chemistry | Electrochemical Techniques | Cerium - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Water - chemistry | Organometallic Compounds - chemistry | Plutonium - chemistry | Uranium - chemistry
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 06/2012, Volume 51, Issue 12, pp. 6603 - 6614
The following monopositive actinyl ions were produced by electrospray ionization of aqueous solutions of AnVIO2(ClO4)2 (An = U, Np, Pu): UVO2 +, NpVO2 +, PuVO2...
AQUO COMPLEXES | EFFECTIVE CORE POTENTIALS | QUANTUM-CHEMICAL METHODS | TRANSITION-METAL | COORDINATION-COMPLEXES | WATER EXCHANGE | ROOM-TEMPERATURE KINETICS | AQUEOUS-SOLUTION | ELECTRONIC-STRUCTURE | ACTINYL IONS | CHEMISTRY, INORGANIC & NUCLEAR | Gases - chemistry | Quantum Theory | Oxidation-Reduction | Neptunium - chemistry | Water - chemistry | Plutonium - chemistry | Uranium - chemistry | Chemical bonds | Oxidation-reduction reaction | Hydration (Chemistry) | Aqueous solution reactions | Ionization | Analysis
AQUO COMPLEXES | EFFECTIVE CORE POTENTIALS | QUANTUM-CHEMICAL METHODS | TRANSITION-METAL | COORDINATION-COMPLEXES | WATER EXCHANGE | ROOM-TEMPERATURE KINETICS | AQUEOUS-SOLUTION | ELECTRONIC-STRUCTURE | ACTINYL IONS | CHEMISTRY, INORGANIC & NUCLEAR | Gases - chemistry | Quantum Theory | Oxidation-Reduction | Neptunium - chemistry | Water - chemistry | Plutonium - chemistry | Uranium - chemistry | Chemical bonds | Oxidation-reduction reaction | Hydration (Chemistry) | Aqueous solution reactions | Ionization | Analysis
Journal Article
Environmental Science & Technology, ISSN 0013-936X, 10/2012, Volume 46, Issue 20, pp. 11251 - 11258
Effective collection of trace-level lanthanides and actinides is advantageous for recovery and recycling of valuable resources, environmental remediation,...
MARINE ORGANIC-MATTER | GULF-OF-MEXICO | SEA-WATER | URANIUM | ENVIRONMENTAL SCIENCES | MESOPOROUS SUPPORTS | SELF-ASSEMBLED MONOLAYERS | ENGINEERING, ENVIRONMENTAL | MANGANESE-DIOXIDE | CARBONATE COMPLEXES | NEPTUNIUM | ADSORPTION | Water Pollutants, Radioactive - chemistry | Water Pollutants, Chemical - chemistry | Actinoid Series Elements - chemistry | Seawater - chemistry | Environmental Restoration and Remediation - methods | Water Pollutants, Chemical - analysis | Lanthanoid Series Elements - analysis | Actinoid Series Elements - analysis | Lanthanoid Series Elements - chemistry | Adsorption | Rivers - chemistry | Nanostructures - chemistry | Water Pollutants, Radioactive - analysis | Index Medicus | Actinide, lanthanide, mesoporous, nanoporous, manganese oxide, SAMMS, chelation, sorbent, ion exchange, adsorption
MARINE ORGANIC-MATTER | GULF-OF-MEXICO | SEA-WATER | URANIUM | ENVIRONMENTAL SCIENCES | MESOPOROUS SUPPORTS | SELF-ASSEMBLED MONOLAYERS | ENGINEERING, ENVIRONMENTAL | MANGANESE-DIOXIDE | CARBONATE COMPLEXES | NEPTUNIUM | ADSORPTION | Water Pollutants, Radioactive - chemistry | Water Pollutants, Chemical - chemistry | Actinoid Series Elements - chemistry | Seawater - chemistry | Environmental Restoration and Remediation - methods | Water Pollutants, Chemical - analysis | Lanthanoid Series Elements - analysis | Actinoid Series Elements - analysis | Lanthanoid Series Elements - chemistry | Adsorption | Rivers - chemistry | Nanostructures - chemistry | Water Pollutants, Radioactive - analysis | Index Medicus | Actinide, lanthanide, mesoporous, nanoporous, manganese oxide, SAMMS, chelation, sorbent, ion exchange, adsorption
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 11/2010, Volume 49, Issue 21, pp. 10074 - 10080
The in situ hydrothermal reduction of Np(VI) to Np(IV) and Pu(VI) to Pu(IV) in the presence of 1,2-phenylenediphosphonic acid (PhP2) results in the...
CATALYZED TRANSFORMATION | POWDER DIFFRACTION DATA | SOLID-SOLUTIONS | CHEMISTRY | CRYSTAL-STRUCTURES | THORIUM PHOSPHATE | TETRAVALENT ACTINIDE PHOSPHATES | BOND-VALENCE PARAMETERS | URANYL PHENYLPHOSPHONATE | HYDROTHERMAL SYNTHESIS | CHEMISTRY, INORGANIC & NUCLEAR | Cerium - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Organophosphonates - chemistry | Models, Molecular | Organometallic Compounds - chemistry | Plutonium - chemistry | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly)
CATALYZED TRANSFORMATION | POWDER DIFFRACTION DATA | SOLID-SOLUTIONS | CHEMISTRY | CRYSTAL-STRUCTURES | THORIUM PHOSPHATE | TETRAVALENT ACTINIDE PHOSPHATES | BOND-VALENCE PARAMETERS | URANYL PHENYLPHOSPHONATE | HYDROTHERMAL SYNTHESIS | CHEMISTRY, INORGANIC & NUCLEAR | Cerium - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Organophosphonates - chemistry | Models, Molecular | Organometallic Compounds - chemistry | Plutonium - chemistry | nuclear (including radiation effects), materials and chemistry by design, synthesis (novel materials), synthesis (self-assembly)
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 11/2010, Volume 49, Issue 21, pp. 9755 - 9757
Molten methylboronic acid has been used as a reactive flux to prepare the first neptunium(V) borate, NpO2[B3O4(OH)2] (NpBO-1), and the first actinide boronate,...
STRUCTURAL-CHARACTERIZATION | COMPLEX | NUCLEAR-WASTE | INSIGHTS | CHEMISTRY, INORGANIC & NUCLEAR | Temperature | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Models, Molecular | Crystallography, X-Ray | Organometallic Compounds - chemistry | Boronic Acids - chemistry | Uranium - chemistry | Borates - chemistry | Uranium | Chemical properties | Structure | Neptunium | Organoboron compounds | Methyl groups | synthesis (novel materials) | synthesis (self-assembly) | materials and chemistry by design | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY | nuclear (including radiation effects)
STRUCTURAL-CHARACTERIZATION | COMPLEX | NUCLEAR-WASTE | INSIGHTS | CHEMISTRY, INORGANIC & NUCLEAR | Temperature | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Models, Molecular | Crystallography, X-Ray | Organometallic Compounds - chemistry | Boronic Acids - chemistry | Uranium - chemistry | Borates - chemistry | Uranium | Chemical properties | Structure | Neptunium | Organoboron compounds | Methyl groups | synthesis (novel materials) | synthesis (self-assembly) | materials and chemistry by design | INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY | nuclear (including radiation effects)
Journal Article
The Journal of Physical Chemistry A, ISSN 1089-5639, 11/2014, Volume 118, Issue 44, pp. 10273 - 10280
Due to the vast application potential of graphene oxide (GO)-based materials in nuclear waste processing, it is of pivotal importance to investigate the...
AQUEOUS-SOLUTIONS | ENERGY | LIGANDS | COMPLEXES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | MULTIWALLED CARBON NANOTUBES | BASIS-SETS | GAS-PHASE URANYL | DENSITY-FUNCTIONAL THEORY | ACTINIDE | ELECTRON-DENSITY | Plutonium - chemistry | Ions - chemistry | Quantum Theory | Graphite - chemistry | Oxides - chemistry | Neptunium - chemistry | Density functionals | Chemical properties | Plutonium | Graphene | Neptunium | Analysis | Actinides | Binding energy | Oxides | Cations | Bonding
AQUEOUS-SOLUTIONS | ENERGY | LIGANDS | COMPLEXES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | MULTIWALLED CARBON NANOTUBES | BASIS-SETS | GAS-PHASE URANYL | DENSITY-FUNCTIONAL THEORY | ACTINIDE | ELECTRON-DENSITY | Plutonium - chemistry | Ions - chemistry | Quantum Theory | Graphite - chemistry | Oxides - chemistry | Neptunium - chemistry | Density functionals | Chemical properties | Plutonium | Graphene | Neptunium | Analysis | Actinides | Binding energy | Oxides | Cations | Bonding
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 04/2015, Volume 54, Issue 7, pp. 3462 - 3468
The solution thermodynamics of the water-soluble complexes formed between 3,4,3-LIÂ(1,2-HOPO) and ZrÂ(IV) or PuÂ(IV) were investigated to establish the metal...
ANTIBODIES | EQUILIBRIA | DECORPORATION AGENTS | 3,4,3-LI(1,2-HOPO) | PLUTONIUM | NEPTUNIUM(IV) | THORIUM(IV) | TRANSURANIUM ELEMENTS | SEQUESTERING AGENTS | PET | CHEMISTRY, INORGANIC & NUCLEAR | Thermodynamics | Gas Chromatography-Mass Spectrometry | Radiopharmaceuticals - chemistry | Drug Stability | Zirconium - chemistry | Chelating Agents - chemistry | Ligands | Plutonium - chemistry | Molecular Structure | Pyridones - chemistry | Coordination Complexes - chemistry | Pyridine | Chelating agents | Chemical properties | Radiopharmaceuticals | Analysis | Chelating | Orbitals | Separation | Stability | Electronics | Liquid chromatography | Estimates
ANTIBODIES | EQUILIBRIA | DECORPORATION AGENTS | 3,4,3-LI(1,2-HOPO) | PLUTONIUM | NEPTUNIUM(IV) | THORIUM(IV) | TRANSURANIUM ELEMENTS | SEQUESTERING AGENTS | PET | CHEMISTRY, INORGANIC & NUCLEAR | Thermodynamics | Gas Chromatography-Mass Spectrometry | Radiopharmaceuticals - chemistry | Drug Stability | Zirconium - chemistry | Chelating Agents - chemistry | Ligands | Plutonium - chemistry | Molecular Structure | Pyridones - chemistry | Coordination Complexes - chemistry | Pyridine | Chelating agents | Chemical properties | Radiopharmaceuticals | Analysis | Chelating | Orbitals | Separation | Stability | Electronics | Liquid chromatography | Estimates
Journal Article
Journal of Environmental Radioactivity, ISSN 0265-931X, 03/2016, Volume 153, pp. 237 - 244
With regard to environmental monitoring of certain nuclear facilities, pentavalent actinides, in particular neptunium and plutonium, play a key role, as the...
Actinide | Complexation | Migration | Speciation | ENVIRONMENTAL SCIENCES | PLASMA-MASS SPECTROMETRY | SULFATE | COMPLEXES | PROTACTINIUM(V) | NP(V) | STABILITY-CONSTANTS | NEPTUNIUM | Thermodynamics | Electrophoresis, Capillary | Actinoid Series Elements - analysis | Mass Spectrometry | Neptunium - chemistry | Plutonium - chemistry | Actinoid Series Elements - chemistry | Radiation Monitoring | Solutions - chemistry | Carbonates | Oxalates | Oxalic acid | Environmental monitoring | Sulfates | Analogies | Actinides | Chlorides | Nuclear engineering
Actinide | Complexation | Migration | Speciation | ENVIRONMENTAL SCIENCES | PLASMA-MASS SPECTROMETRY | SULFATE | COMPLEXES | PROTACTINIUM(V) | NP(V) | STABILITY-CONSTANTS | NEPTUNIUM | Thermodynamics | Electrophoresis, Capillary | Actinoid Series Elements - analysis | Mass Spectrometry | Neptunium - chemistry | Plutonium - chemistry | Actinoid Series Elements - chemistry | Radiation Monitoring | Solutions - chemistry | Carbonates | Oxalates | Oxalic acid | Environmental monitoring | Sulfates | Analogies | Actinides | Chlorides | Nuclear engineering
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 10/2014, Volume 53, Issue 20, pp. 10846 - 10853
The preorganized tetradentate 2,9-diamido-1,10-phenanthroline ligand with hard–soft donors combined in the same molecule has been found to possess high...
FINE-STRUCTURE SPECTROSCOPY | 1,10-PHENANTHROLINE-2,9-DICARBOXYLIC ACID | ACTINIDES | SEPARATION | DENSITY-FUNCTIONAL THEORY | METAL-IONS | SELECTIVITY | NITROGEN LIGANDS | HIGHER CHARGE | AQUEOUS-SOLUTION | CHEMISTRY, INORGANIC & NUCLEAR | Quantum Theory | Phenanthrolines - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Ligands | Organometallic Compounds - chemistry | Plutonium - chemistry | Molecular Structure | Uranium - chemistry
FINE-STRUCTURE SPECTROSCOPY | 1,10-PHENANTHROLINE-2,9-DICARBOXYLIC ACID | ACTINIDES | SEPARATION | DENSITY-FUNCTIONAL THEORY | METAL-IONS | SELECTIVITY | NITROGEN LIGANDS | HIGHER CHARGE | AQUEOUS-SOLUTION | CHEMISTRY, INORGANIC & NUCLEAR | Quantum Theory | Phenanthrolines - chemistry | Organometallic Compounds - chemical synthesis | Neptunium - chemistry | Ligands | Organometallic Compounds - chemistry | Plutonium - chemistry | Molecular Structure | Uranium - chemistry
Journal Article
20.
Full Text
Influence of riboflavin on the reduction of radionuclides by Shewanella oneidenis MR-1
Dalton transactions (Cambridge, England : 2003), ISSN 1477-9226, 03/2016, Volume 45, Issue 12, pp. 5030 - 5037
Uranium (as UO2(2+)), technetium (as TcO4(-)) and neptunium (as NpO2(+)) are highly mobile radionuclides that can be reduced enzymatically by a range of...
Biodegradation, Environmental | X-Ray Absorption Spectroscopy | Riboflavin - chemistry | Oxidation-Reduction | Neptunium - chemistry | Ferric Compounds - chemistry | Shewanella - metabolism | Uranium - chemistry | Radioisotopes - chemistry | Technetium - chemistry
Biodegradation, Environmental | X-Ray Absorption Spectroscopy | Riboflavin - chemistry | Oxidation-Reduction | Neptunium - chemistry | Ferric Compounds - chemistry | Shewanella - metabolism | Uranium - chemistry | Radioisotopes - chemistry | Technetium - chemistry
Journal Article
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