N. Huittinen
Helmholtz-Zentrum Dresden-Rossendorf
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Featured researches published by N. Huittinen.
Journal of Colloid and Interface Science | 2016
N. Huittinen; Yulia Arinicheva; Moritz Schmidt; Stefan Neumeier; Thorsten Stumpf
In the present study, we have investigated the luminescent properties of Eu(3+) as a dopant in a series of synthetic lanthanide phosphates from the monazite group. Systematic trends in the spectroscopic properties of Eu(3+) depending on the size of the host cation and the dopant to ligand distance have been observed. Our results show that the increasing match between host and dopant radii when going from Eu(3+)-doped LaPO4 toward the smaller GdPO4 monazite decreases both the full width at half maximum of the Eu(3+) excitation peak, as well as the (7)F2/(7)F1 emission band intensity ratio. The decreasing Ln⋯O bond distance within the LnPO4 series causes a systematic bathochromic shift of the Eu(3+) excitation peak, showing a linear dependence of both the host cation size and the Ln⋯O distance. The linear relationship can be used to predict the energy band gap for Eu(3+)-doped monazites for which no Eu(3+) luminescent data is available. Finally, mechanisms for metal-metal energy transfer between host and dopant lanthanides have been explored based on recorded luminescence lifetime data. Luminescence lifetime data for Eu(3+) incorporated in the various monazite hosts clearly indicated that the energy band gap between the guest ion emission transition and the host ion absorption transition can be correlated to the degree of quenching observed in these materials with otherwise identical geometries and chemistries.
Journal of Colloid and Interface Science | 2016
S. Virtanen; F. Bok; A. Ikeda-Ohno; André Rossberg; Johannes Lützenkirchen; Thomas Rabung; Jukka Lehto; N. Huittinen
The sorption of pentavalent neptunium, Np(V), on corundum (α-Al2O3) was investigated in the absence and presence of trivalent europium or gadolinium as a competing element under CO2-free conditions. The objective of this study was to investigate how a trivalent metal ion with a higher charge than that of the neptunyl(V) ion would affect the sorption of Np(V) when allowed to adsorb on the mineral surface before the addition of Np(V). Batch sorption experiments conducted as a function of pH (pH-edges) and as a function of Np(V) concentration (isotherms) in the absence and presence of 1×10(-5)M Eu(III) showed no sign of Eu being able to block Np sorption sites. Surface complexation modelling using the diffuse double layer model was applied to the batch data to obtain surface complexation constants for the formed Np(V) complexes on corundum. To account for potential changes occurring in the coordination environment of the neptunium ion in the presence of a trivalent lanthanide, X-ray absorption spectroscopy (XAS) measurements were carried out on the samples containing only Np(V) and Np(V)+Gd(III). The results reveal the presence of a bidentate Np(V) edge-sharing complex on the corundum surface in the absence of Gd(III), while the coordination environment of Np(V) on the corundum surface could be changed when Gd(III) is added to the sample before the sorption of Np(V).
Inorganic Chemistry | 2018
N. Huittinen; Andreas C. Scheinost; Yaqi Ji; Piotr M. Kowalski; Yulia Arinicheva; Andreas Wilden; Stefan Neumeier; Thorsten Stumpf
This study investigates the incorporation of the minor actinide curium (Cm3+) in a series of synthetic La1- xGd xPO4 ( x = 0, 0.24, 0.54, 0.83, 1) monazite and rhabdophane solid-solutions. To obtain information on the incorporation process on the molecular scale and to understand the distribution of the dopant in the synthetic phosphate phases, combined time-resolved laser fluorescence spectroscopy and X-ray absorption fine structure spectroscopy investigations were conducted and complemented with ab initio atomistic simulations. We found that Cm3+ is incorporated in the monazite endmembers (LaPO4 and GdPO4) on one specific, highly ordered lattice site. The intermediate solid-solutions, however, display increasing disorder around the Cm3+ dopant as a result of random variations in nearest neighbor distances. In hydrated rhabdophane, and especially its La-rich solid-solutions, Cm3+ is preferentially incorporated on nonhydrated lattice sites. This site occupancy is not in agreement with the hydrated rhabdophane structure, where two-thirds of the lattice sites are associated with water of hydration (LnPO4·0.67H2O), implying that structural substitution reactions cannot be predicted based on the structure of the host matrix only.
Journal of Nuclear Materials | 2017
N. Huittinen; Yulia Arinicheva; Piotr M. Kowalski; Victor Vinograd; Stefan Neumeier; Dirk Bosbach
9th International Conference on Nuclear and Radiochemistry | 2016
N. Huittinen; Andreas Wilden; Yulia Arinicheva; Andreas C. Scheinost
International Symposium on Solubility Phenomena and Related Equilibrium Processes | 2018
N. Huittinen; Andreas Wilden; Andreas C. Scheinost; Yulia Arinicheva; Yaqi Ji; Piotr M. Kowalski; Stefan Neumeier
Inorganic Chemistry | 2018
N. Jordan; M. Demnitz; H. Lösch; S. Starke; Vinzenz Brendler; N. Huittinen
Chemistry: A European Journal | 2018
Bin Xiao; Henry Lösch; N. Huittinen; Moritz Schmidt
Applied Geochemistry | 2018
Sinikka Virtanen; S. Meriläinen; M. Eibl; Thomas Rabung; Jukka Lehto; N. Huittinen
Journal of Nuclear Materials | 2017
N. Huittinen; Yulia Arinicheva; Piotr M. Kowalski; Victor Vinograd; Stefan Neumeier; Dirk Bosbach