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.
The 49 checked references that resolve
resolves10.1002/anie.200501931How Can Uranium Ions (U<sup>+</sup>, U<sup>2+</sup>) Activate the OH Bond of Water in the Gas Phase?
resolves10.1021/ja065683iGas-Phase Chemistry of Actinides Ions: New Insights into the Reaction of UO<sup>+</sup>and UO<sup>2+</sup>with Water
resolves10.1021/jp061851hPredicting the Energy of the Water Exchange Reaction and Free Energy of Solvation for the Uranyl Ion in Aqueous Solution
resolves10.1016/S0924-2031(00)00067-9Infrared and Raman spectra of uranyl(VI) oxo-hydroxo complexes in acid aqueous solutions: a chemometric study
resolves10.1039/B607026DElectronic spectra of uranyl chloride complexes in acetone: a CASSCF/CASPT2 investigation
resolves10.1063/1.467231Energy-structure relationships for microscopic solvation of anions in water clusters
resolves10.1063/1.1749327A Theory of Water and Ionic Solution, with Particular Reference to Hydrogen and Hydroxyl Ions
resolves10.1346/CCMN.1995.0430508The Influence of Uranyl Hydrolysis and Multiple Site-Binding Reactions on Adsorption of U(VI) to Montmorillonite
resolves10.1021/ja0398666Hydrolysis of Uranium(VI) at Variable Temperatures (10−85 °C)
resolves10.1016/j.ccr.2005.10.005Solution coordination chemistry of actinides: Thermodynamics, structure and reaction mechanisms
resolves10.1021/j100715a006Direct proton magnetic resonance cation hydration study of uranyl perchlorate, nitrate, chloride, and bromide in water-acetone mixtures
resolves10.1021/jp990042dStructure of Uranium(VI) in Strong Alkaline Solutions. A Combined Theoretical and Experimental Investigation
resolves10.1021/jp983543sHydration of UO<sub>2</sub><sup>2+</sup> and PuO<sub>2</sub><sup>2+</sup>
resolves10.1021/jp000519hTheoretical Studies of the Properties and Solution Chemistry of AnO<sub>2</sub><sup>2+</sup> and AnO<sub>2</sub><sup>+</sup> Aquo Complexes for An = U, Np, and Pu
resolves10.1021/ja0483544The Mechanism of Water Exchange in AmO<sub>2</sub>(H<sub>2</sub>O)<sub>5</sub><sup>2+</sup> and in the Isoelectronic UO<sub>2</sub>(H<sub>2</sub>O)<sub>5</sub><sup>+</sup> and NpO<sub>2</sub>(H<sub>2</sub>O)<sub>5</sub><sup>2+</sup> Complexes as Studied by Quantum Chemical Methods
resolves10.1021/jp037997nExperimental Coordination Environment of Uranyl(VI) in Aqueous Solution
resolves10.1021/ja0526719The Coordination of Uranyl in Water: A Combined Quantum Chemical and Molecular Simulation Study
resolves10.1039/B517281KDensity functional theory investigation of the geometric and electronic structures of [UO
<sub>2</sub>
(H
<sub>2</sub>
O)
<sub>m</sub>
(OH)
<sub>n</sub>
]
<sup>2−n</sup>
(n + m = 5)
resolves10.1016/j.chemphys.2006.02.006A theoretical study of uranyl solvation: Explicit modelling of the second hydration sphere by quantum mechanical methods
resolves10.1021/jp070433pHydration and Water-Exchange Mechanism of the UO<sub>2</sub><sup>2+</sup> Ion Revisited: The Validity of the “<i>n </i>+ 1” Model
resolves10.1021/ic00051a021Aqueous uranium complexes. 2. Raman spectroscopic study of the complex formation of the dioxouranium(VI) ion with a variety of inorganic and organic ligands
resolves10.1021/ic981137hChemical Speciation of the Uranyl Ion under Highly Alkaline Conditions. Synthesis, Structures, and Oxo Ligand Exchange Dynamics
resolves10.1021/ic048567uTheoretical Investigations of Uranyl−Ligand Bonding: Four- and Five-Coordinate Uranyl Cyanide, Isocyanide, Carbonyl, and Hydroxide Complexes
resolves10.1021/ja982653+Unimolecular Reactions of Dihydrated Alkaline Earth Metal Dications M<sup>2+</sup>(H<sub>2</sub>O)<sub>2</sub>, M = Be, Mg, Ca, Sr, and Ba: Salt-Bridge Mechanism in the Proton-Transfer Reaction M<sup>2+</sup>(H<sub>2</sub>O)<sub>2</sub> → MOH<sup>+</sup> + H<sub>3</sub>O<sup>+</sup>
resolves10.1021/ja00033a068Role of d and f orbitals in the geometries of low-valent actinide compounds. Ab initio studies of U(CH3)3, Np(CH3)3, and Pu(CH3)3
resolves10.1063/1.438955Self-consistent molecular orbital methods. XX. A basis set for correlated wave functions
The 19 references without a DOI — listed, not checked
no DOI — not checkedPéligot E (1841). J Pham Sci Accessoires 27: 525
no DOI — not checkedLipilina II (1959) Uranyl and its compounds. Acad Sci USSR, Moscow (in Russian)
no DOI — not checkedBailar JC, Emelius HJ, Nyholm R (1973) In: Trotman-Dickenson AF (ed) Comprehensive inorganic chemistry, vol 5. Pergamon Press, Oxford
no DOI — not checkedVolod’ko LV, Komyak AI, Umreyko DS (1981) Uranyl compounds. Belorussian University, Minsk (in Russian)
no DOI — not checkedGrenthe I, Fuger J, Konings RJM, Lemire RJ, Müller AB, Nguyen-Trung C, Wanner H (1992) In: Wanner H, Forest I (eds) Chemical thermodynamics of uranium. North-Holland, New York, p 98
no DOI — not checkedGreenwood NN and Earnshaw A (1997). Chemistry of the elements. Butterworth Heinemann, Oxford
no DOI — not checkedMendeleyev DI (1869). Bases of chemistry, 1st ed. StPB, St. Petersburg
no DOI — not checkedMendeleyev DI (1959). Solutions. Izd Acad Sci USSR, Moscow
no DOI — not checkedGurney RW (1953). Ionic processes in solution. McGraw-Hill, New York
no DOI — not checkedSamoilov OY (1972) In: Horne RA (ed) Water and aqueous solution: structure, thermodynamics, and transport processes. Wiley, New York, p 597
no DOI — not checkedMarcus Y (1985). Ion solvation. Wiley, Chichester
no DOI — not checkedKrestov GA (1991). Thermodynamics of solvation. Ellis Horwood, New York
no DOI — not checkedBuncel E, Stairs R and Wilson H (2003). The role of the solvent in chemical reactions. Oxford University Press, Oxford
no DOI — not checkedEuger J, Khodakovsky IL, Sergeeva EI, Medvedev VA and Navratil JD (1992). The chemical thermodynamics of actinide elements and compounds: Part 12, The actinide aqueous inorganic complexes. JAEA, Vienna, p 31
no DOI — not checkedGuillaumont R, Fanghanel T, Fuger J, Grenthe I, Neck V, Palmer DA, Rand MH (2003) In: Mompean FJ, Illemassene M, Domenech-Orti C, Ben Said K (eds) Update on the chemical thermodynamics of uranium, neptunium, plutonium, americium and technetium. Elsevier, Amsterdam, p 46, 64, 716, 724
no DOI — not checkedZundel G (1969). Hydration and intermolecular interaction— infrared investigation of polyelectrolyte membranes. Academic Press, New York
no DOI — not checkedZundel G (2000). Adv Chem Phys 111: 1
no DOI — not checkedZundel G (2006) Es muss viel geschehen. Verlag für Wissenschafts- und Regionalgeschichte Dr. Michael Engel, Berlin
no DOI — not checkedFrisch MJ, Trucks GW, Schlegel HB, Scuseria GE, Robb MA, Cheeseman JR, Montgomery JA Jr, Vreven T, Kudin KN, Burant JC, Millam JM, Iyengar SS, Tomasi J, Barone V, Mennucci B, Cossi M, Scalmani G, Rega N, Petersson GA, Nakatsuji H, Hada M, Ehara M, Toyota K, Fukuda R, Hasegawa J, Ishida M, Nakajima T, Honda Y, Kitao O, Nakai H, Klene M, Li X, Knox JE, Hratchian HP, Cross JB, Bakken V, Adamo C, Jaramillo J, Gomperts R, Stratmann RE, Yazyev O, Austin AJ, Cammi R, Pomelli C, Ochterski JW, Ayala PY, Morokuma K, Voth GA, Salvador P, Dannenberg JJ, Zakrzewski VG, Dapprich S, Daniels AD, Strain MC, Farkas O, Malick DK, Rabuck AD, Raghavachari K, Foresman JB, Ortiz JV, Cui Q, Baboul AG, Clifford S, Cioslowski J, Stefanov BB, Liu G, Liashenko A, Piskorz P, Komaromi I, Martin RL, Fox DJ, Keith T, Al-Laham MA, Peng CY, Nanayakkara A, Challacombe M, Gill PMW, Johnson B, Chen W, Wong MW, Gonzalez C, Pople JA (2004) GAUSSIAN 03, Revision C.02, Gaussian, Wallington
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