1 |
Complexation of Light Trivalent Lanthanides with N-(2-Hydroxyethyl)ethylenediamine-N,N ',N '-triacetic Acid in Aqueous Solutions: Thermodynamic Analysis and Coordination Modes Li XL, Zhang ZC, Liu BJ, Mu WJ, Yang YC, Martin LR, Luo SZ, Rao LF Inorganic Chemistry, 58(22), 15618, 2019 |
2 |
Complexation of Uranium(VI) with N-(2-Hydroxyethyl)ethylenediamine-N,N',N'-triacetic Acid in Aqueous Solution: Thermodynamic Studies and Coordination Analyses Li XL, Zhang ZC, Martin LR, Luo SZ, Rao LF Inorganic Chemistry, 57(13), 7684, 2018 |
3 |
A Combined Density Functional Theory and Spectrophotometry Study of the Bonding Interactions of [NpO2 center dot M](4+) Cation-Cation Complexes Freiderich JW, Burn AG, Martin LR, Nash KL, Clark AE Inorganic Chemistry, 56(9), 4788, 2017 |
4 |
Complexation of Curium(III) with DTPA at 10-70 degrees C: Comparison with Eu(III)-DTPA in Thermodynamics, Luminescence, and Coordination Modes Tian GX, Zhang ZY, Martin LR, Rao LF Inorganic Chemistry, 54(4), 1232, 2015 |
5 |
Effect of temperature on the protonation of N-(2-hydroxyethyl) ethylenediamine-N,N',N'-triacetic acid in aqueous solutions: Potentiometric and calorimetric studies Li XL, Zhang ZC, Endrizzi F, Martin LR, Luo SZ, Rao LF Journal of Chemical Thermodynamics, 85, 35, 2015 |
6 |
Features of the Thermodynamics of Trivalent Lanthanide/Actinide Distribution Reactions by Tri-n-octylphosphine Oxide and Bis(2-ethylhexyl) Phosphoric Acid Grimes TS, Zalupski PR, Martin LR Journal of Physical Chemistry B, 118(44), 12725, 2014 |
7 |
Understanding the Solution Behavior of Minor Actinides in the Presence of EDTA(4-), Carbonate, and Hydroxide Ligands Griffiths TL, Martin LR, Zalupski PR, Rawcliffe J, Sarsfield MJ, Evans NDM, Sharrad CA Inorganic Chemistry, 52(7), 3728, 2013 |
8 |
Thermodynamic, Spectroscopic, and Computational Studies of Lanthanide Complexation with Diethylenetriaminepentaacetic Acid: Temperature Effect and Coordination Modes Tian GX, Martin LR, Zhang ZY, Rao LF Inorganic Chemistry, 50(7), 3087, 2011 |
9 |
Complexation of Lactate with Neodymium(III) and Europium(III) at Variable Temperatures: Studies by Potentiometry, Microcalorimetry, Optical Absorption, and Luminescence Spectroscopy Tian GX, Martin LR, Rao LF Inorganic Chemistry, 49(22), 10598, 2010 |
10 |
Redox-Based Separation of Americium from Lanthanides in Sulfate Media Shehee T, Martin LR, Zalupski PR, Nash KL Separation Science and Technology, 45(12-13), 1743, 2010 |