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Highly Efficient Separation of Actinides from Lanthanides by a Phenanthroline-Derived Bis-triazine Ligand

https://doi.org/10.1021/ja203378m
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Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

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The 77 checked references that resolve
resolves10.1007/BF02533770
The modern purex process and its analytical requirements
resolves10.1524/ract.1984.36.12.3
Chemistty of the Purex Process
resolves10.1007/BF02041529
Chemistry of nuclear fuel reprocessing: Current status
resolves10.1081/SEI-100103276
ACTINIDE PARTITIONING—A REVIEW
resolves10.1016/B0-08-043748-6/02001-6
The Actinides
resolves10.1016/0925-8388(94)09002-5
Comparative solution chemistry of the 4f and 5f elements
resolves10.1021/cr00034a002
Design and Synthesis of Macrocyclic Ligands and Their Complexes of Lanthanides and Actinides
resolves10.1016/S0925-8388(02)00305-5
Covalency in f-element bonds
resolves10.1016/j.crci.2010.06.004
Recent developments in nonaqueous plutonium coordination chemistry
resolves10.1039/B603847F
Multicoordinate ligands for actinide/lanthanide separations
resolves10.1524/ract.2008.1483
An overview and historical look back at the solvent extraction using nitrogen donor ligands to extract and separate An(III) from Ln(III)
resolves10.1021/cr078003i
Complexation and Separation of Lanthanides(III) and Actinides(III) by Heterocyclic N-Donors in Solutions
resolves10.1016/S1387-7003(00)00181-7
Lanthanide(III) complexes of a highly efficient actinide(III) extracting agent – 2,6-bis(5,6-dipropyl-1,2,4-triazin-3-yl)pyridine
resolves10.1039/b103606h
Selective complexation of uranium(iii) over cerium(iii) by 2,6-bis(5,6-dialkyl-1,2,4-triazin-3-yl)pyridines: 1H NMR and X-ray crystallography studies
resolves10.1016/S1387-7003(02)00489-6
12-coordinate complexes formed by the early lanthanide metals with 2,6-bis(-1,2,4-triazin-3-yl)-pyridine
resolves10.1039/b103996m
A donor–acceptor model of Ln(III) complexation with terdentate nitrogen planar ligands
resolves10.1039/B203725D
The affinity and selectivity of terdentate nitrogen ligands towards trivalent lanthanide and uranium ions viewed from the crystal structures of the 1 ∶ 3 complexes
resolves10.1021/ic025637t
Use of Electrospray Mass Spectrometry (ESI-MS) for the Study of Europium(III) Complexation with Bis(dialkyltriazinyl)pyridines and Its Implications in the Design of New Extracting Agents
resolves10.1021/ic025894y
Trivalent Lanthanide Interactions with a Terdentate Bis(dialkyltriazinyl)pyridine Ligand Studied by Electrospray Ionization Mass Spectrometry
resolves10.1021/ic049311r
Europium(III) Interaction with a Polyaza-Aromatic Extractant Studied by Time-Resolved Laser-Induced Luminescence:  A Thermodynamical Approach
resolves10.1021/ic0511726
Characterization and Comparison of Cm(III) and Eu(III) Complexed with 2,6-Di(5,6-dipropyl-1,2,4-triazin-3-yl)pyridine Using EXAFS, TRFLS, and Quantum-Chemical Methods
resolves10.1016/j.poly.2005.09.030
Synthesis, structure, and redox states of homoleptic d-block metal complexes with bis-1,2,4-triazin-3-yl-pyridine and 1,2,4-triazin-3-yl-bipyridine extractants
resolves10.1039/b9nj00371a
Direct nano ESI time-of-flight mass spectrometric investigations on lanthanide BTP complexes in the extraction-relevant diluent 1-octanol
resolves10.1039/b927016g
Characterization of redox sensitive plutonium(iii) complexed with alkylated 2,6-ditriazinylpyridine (BTP) in organic solution
resolves10.1039/c000772b
BTP-based ligands and their complexes with Eu3+ at “oil”/water interfaces. A molecular dynamics study
resolves10.1016/j.inoche.2004.12.017
6,6′-bis-(5,6-diethyl-[1,2,4]triazin-3-yl)-2,2′-bipyridyl the first example of a new class of quadridentate heterocyclic extraction reagents for the separation of americium(III) and europium(III)
resolves10.1080/07366290600952659
Separation of Actinides(III) from Lanthanides(III) in Simulated Nuclear Waste Streams using 6,6′‐Bis‐(5,6‐dipentyl‐[1,2,4]triazin‐3‐yl)‐[2,2′]bipyridinyl (C5‐BTBP) in Cyclohexanone
resolves10.1039/B919247F
A TRLFS study on the complexation of Cm(iii) and Eu(iii) with 4-t-butyl-6,6′-bis-(5,6-diethyl-1,2,4-triazin-3-yl)-2,2′-bipyridine in a water/2-propanol mixture
resolves10.1021/ic9010899
Recognition of Some Lanthanides, Actinides, and Transition- and Heavy-Metal Cations by N-Donor Ligands: Thermodynamic and Kinetic Aspects
resolves10.1021/je1005246
Thermodynamics of Dissolution for Bis(triazine)−Bipyridine-Class Ligands in Different Diluents and Its Reflection on Extraction
resolves10.1039/c002279a
Linear uranium metallocenes with polydentate aromatic nitrogen ligands
resolves10.1039/C0CP01975E
Basicity, complexation ability and interfacial behavior of BTBPs: a simulation study
resolves10.1080/07366290600761936
6,6′‐<i>Bis</i>(5,5,8,8‐tetramethyl‐5,6,7,8‐tetrahydro‐benzo[1,2,4]triazin‐3‐yl) [2,2′]bipyridine, an Effective Extracting Agent for the Separation of Americium(III) and Curium(III) from the Lanthanides
resolves10.1080/07366290802672204
Demonstration of a SANEX Process in Centrifugal Contactors using the CyMe<sub>4</sub>‐BTBP Molecule on a Genuine Fuel Solution
resolves10.1039/b514108g
New bis(triazinyl) pyridines for selective extraction of americium(iii)
resolves10.1039/b924988e
Interaction of 6,6′′-bis(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-1,2,4-benzotriazin-3-yl)-2,2′:6′,2′′-terpyridine (CyMe4-BTTP) with some trivalent ions such as lanthanide(iii) ions and americium(iii)
resolves10.1039/b907084b
Radiolysis of solvents containing C5-BTBP: identification of degradation products and their dependence on absorbed dose and dose rate
resolves10.1524/ract.2008.1478
First 5f-element complexes with the tetradentate BTBP ligand. Synthesis and crystal structure of uranyl(VI) compounds with CyMe<sub>4</sub>BTBP
resolves10.1021/ic8004486
Sterically Congested Uranyl Complexes with Seven-Coordination of the UO<sub>2</sub> Unit: the Peculiar Ligation Mode of Nitrate in [UO<sub>2</sub>(NO<sub>3</sub>)<sub>2</sub>(Rbtp)] Complexes
resolves10.1039/b820659g
Synthesis and crystal structure of pentavalent uranyl complexes. The remarkable stability of UO2X (X = I, SO3CF3) in non-aqueous solutions
resolves10.1039/cs9942300327
1,10-Phenanthroline: a versatile ligand
resolves10.1016/B0-08-043748-6/01202-0
Phenanthroline Ligands
resolves10.1039/b806408n
1,10-Phenanthrolines: versatile building blocks for luminescent molecules, materials and metal complexes
resolves10.1016/j.ccr.2010.04.008
1,10-Phenanthroline: A versatile building block for the construction of ligands for various purposes
resolves10.1021/ja047410y
2,9-Di-(2‘-pyridyl)-1,10-phenanthroline:  A Tetradentate Ligand for Ru(II)
resolves10.1021/ja077141m
Enhanced Metal Ion Selectivity of 2,9-Di-(pyrid-2-yl)-1,10-phenanthroline and Its Use as a Fluorescent Sensor for Cadmium(II)
resolves10.1039/jr9620001188
226. Physical properties and chemical constitution. Part XXXV. The electric dipole moments of some phenanthrolines and bipyridyls
resolves10.1107/S0365110X65004188
Crystal data on<i>o</i>-phenanthroline hydrate
resolves10.1002/jhet.5570180332
Synthesis of some 2,9‐disubstituted‐1,10‐phenanthrolines
resolves10.1021/jm9801354
Synthesis and Structure−Activity Relationships of 2-Pyrazinylcarboxamido- benzoates and β-Ionylideneacetamidobenzoates with Retinoidal Activity
resolves10.1021/jm990063w
Syntheses and Structure−Activity Relationships of 5,6,7,8-Tetrahydro-5,5,8,8-tetramethyl-2-quinoxaline Derivatives with Retinoic Acid Receptor α Agonistic Activity
resolves10.1021/ja01544a068
Syntheses by Free-radical Reactions. I. Oxidative Coupling Effected by Hydroxyl Radicals
resolves10.1016/1350-4177(95)00035-6
Investigation into the effect of ultrasound on the dimerization of pivalic acid using Fenton's reagent
resolves10.1039/b010123k
A sonoelectrochemical Fenton process for efficient synthesis of tetramethyladipic acid from pivalic acid
resolves10.1055/s-0030-1289557
Development of Highly Selective Ligands for Separations of Actinides from Lanthanides in the Nuclear Fuel Cycle
resolves10.1016/S0040-4020(01)85547-2
1,2-Dibromoethane in the synthesis of 2-bromoesters: Bromination vs alkylation.
resolves10.1039/B511321K
Complexes formed between the quadridentate, heterocyclic molecules 6,6′-bis-(5,6-dialkyl-1,2,4-triazin-3-yl)-2,2′-bipyridine (BTBP) and lanthanides( <scp>iii</scp> ): implications for the partitioning of actinides( <scp>iii</scp> ) and lanthanides( <scp>iii</scp> )
resolves10.1002/mrm.1910360505
The NMR chemical shift pH measurement revisited: Analysis of error and modeling of a pH dependent reference
resolves10.1002/mrc.2494
NMR determination of p<i>K</i><sub>a</sub> values of indoloquinoline alkaloids
resolves10.1021/ja01092a025
Ring Inversion in Cyclohexene<sup>1</sup>
resolves10.1021/ic50207a042
Nuclear magnetic resonance spectroscopy of lanthanide complexes with a tetraacetic tetraaza macrocycle. Unusual conformation properties
resolves10.1021/ic00171a018
Crystal and molecular structure of sodium aqua(1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetato)europate(III) tetrahydrate Na+(EuDOTA.H2O)-.4H2O, and its relevance to NMR studies of the conformational behavior of the lanthanide complexes formed by the macrocyclic ligand DOTA
resolves10.1021/ic00221a018
NMR investigation of the lanthanide complexes with a 14-membered polyaza polyacetic macrocycle TETA. Another rare example of nonlabile lanthanide compounds
resolves10.1021/ic025695e
Polymethylated DOTA Ligands. 2. Synthesis of Rigidified Lanthanide Chelates and Studies on the Effect of Alkyl Substitution on Conformational Mobility and Relaxivity
resolves10.1021/ja0725201
Increased Paramagnetic Effect of a Lanthanide Protein Probe by Two-Point Attachment
resolves10.1021/cr900033p
Theory, Practice, and Applications of Paramagnetic Relaxation Enhancement for the Characterization of Transient Low-Population States of Biological Macromolecules and Their Complexes
resolves10.1016/S0925-8388(98)00197-2
Am (III)/Eu (III) separation at low pH using synergistic mixtures composed of carboxylic acids and neutral nitrogen polydendate ligands
resolves10.1080/07366299908934610
SYNERGISTIC SOLVENT EXTRACTION OF TRIVALENT AMERICIUM AND EUROPIUM BY 2-BROMODECANOIC ACID AND NEUTRAL NITROGEN-CONTAINING REAGENTS
resolves10.1039/a907077j
Separation of americium(III) from europium(III) with tridentate heterocyclic nitrogen ligands and crystallographic studies of complexes formed by 2,2′∶6′,2″-terpyridine with the lanthanides
resolves10.1021/jo00008a068
A relationship between experimentally determined pKas and molecular surface ionization energies for some azines and azoles
resolves10.1524/ract.93.6.351.65642
Recovery of minor actinides from HLLW using the DIAMEX process
resolves10.1080/07366299808934591
ROTATING MEMBRANE CELL TECHNIQUE FOR THE STUDY OF LIQUID/LIQUID EXTRACTION KINETICS.
resolves10.1021/jp000868b
Effect of a Salt on the Kinetics of Solute Transfer at a Free Liquid/Liquid Interface
resolves10.1016/S0304-386X(02)00211-6
Study of salt effects on the kinetics of extraction of cobalt(II) and zinc(II) at trace level by D2EHPA in n-dodecane
resolves10.1080/07366290600646947
Extraction Properties of 6,6′‐Bis‐(5,6‐dipentyl‐[1,2,4]triazin‐3‐yl)‐[2,2′]bipyridinyl (C5‐BTBP)
resolves10.1080/07366290802544726
Demonstration of a TODGA based Extraction Process for the Partitioning of Minor Actinides from a PUREX Raffinate
resolves10.1085/jgp.7.5.625
AN INTERFACIAL TENSIOMETER FOR UNIVERSAL USE
The 10 references without a DOI — listed, not checked
no DOI — not checkedOECD/NEA. Nuclear Fuel Cycle Transition Scenario Studies - Status Report, NEA No. 6194;OECD Publications:Paris, 2009.
no DOI — not checkedref2/cit2a
no DOI — not checkedref2/cit2e
no DOI — not checkedMusikas, C .; Schultz, W.; Liljenzin, J.O.Solvent Extraction Principles and Practice,2nd ed.Rydberg, J.; Cox, M.; Musikas, C.; Choppin, G., Eds.Marcel Dekker, Inc.:New York, 2004; pp507–557.
no DOI — not checkedref3/cit3
no DOI — not checkedCotton, S.Comprehensive Coordination Chemistry II, Vol.3;McCleverty, J. A.; Meyer, T. J., Eds.Elsevier:Oxford, 2004; pp93–188.
no DOI — not checkedKatz, J. J.; Morss, L. R.; Edelstein, N. M.; Fuger, J.The Chemistry of the Actinide and Transactinide Elements, Vol.1;Katz, J. J.; Morss, L. R.; Edelstein, N. M.; Fuger, J., Eds.Springer:Dordrecht, 2006; pp1–17.
no DOI — not checkedBertini, I.; Luchinat, C.; Parigi, G.Solution NMR of Paramagnetic Molecules;Elsevier:Amsterdam, 2001; pp62–67.
no DOI — not checkedref31/cit31
no DOI — not checkedSurface Chemistry of Solid and Liquid Interfaces
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