2019
DOI: 10.1002/chem.201806070
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Origin of Selectivity of a Triazinyl Ligand for Americium(III) over Neodymium(III)

Abstract: M(EtBTP) 3 ][BPh 4 ] 3 ·3CH 3 CN (M = Nd, Am;EtBTP = 2,6-bis(5,6-diethyl-1,2,4-triazin-3-yl)pyridine) have been synthesized from reactions of MCl 3 ·n H 2 Ow ith EtBTP in acetonitrile followed by anion metathesis. Structural analysis reveals that these compounds contain M 3 + cations bound by tridentate EtBTP ligands to create at ricapped trigonal prismatic geometry around the metal centers. Collection of high-resolution,s ingle-crystal X-ray diffraction data also allowedr eductioni nb ond lengths esd's, such … Show more

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Cited by 36 publications
(43 citation statements)
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“…And to validate the possibility of formation the 1 : 3 species of trivalent actinides and lanthanides with tridentate L 2 , the 9‐coordinated 1 : 3 type Am III and Eu III complexes with L 2 were optimized using B3LYP method. Similar 1 : 3 Am III and lanthanide complexes have also been reported with other tridentate ligands like Et‐BTP [28] and N,O‐mixed diphenylphosphoryl ligands [29]…”
Section: Resultssupporting
confidence: 76%
See 1 more Smart Citation
“…And to validate the possibility of formation the 1 : 3 species of trivalent actinides and lanthanides with tridentate L 2 , the 9‐coordinated 1 : 3 type Am III and Eu III complexes with L 2 were optimized using B3LYP method. Similar 1 : 3 Am III and lanthanide complexes have also been reported with other tridentate ligands like Et‐BTP [28] and N,O‐mixed diphenylphosphoryl ligands [29]…”
Section: Resultssupporting
confidence: 76%
“…And to validate the possibility of formation the 1 : 3 species of trivalent actinides and lanthanides with tridentate L 2 , the 9-coordinated 1 : 3 type Am III and Eu III complexes with L 2 were optimized using B3LYP method. Similar 1 : 3 Am III and lanthanide complexes have also been reported with other tridentate ligands like Et-BTP [28] and N,O-mixed diphenylphosphoryl ligands. [29] As listed in Table 3, in these optimized 1 : 1 and 1 : 2 complexes of L 1 , the average Am-N L and Am-O L bond distances are slightly longer than their corresponding EuÀ N L and EuÀ O L bond distances, which can be ascribed to the slightly larger ionic radius of Am III (1.070 Å) than that of Eu III (0.995 Å).…”
Section: Theoretical Calculation Studiessupporting
confidence: 74%
“…Key elements within QTAIM were extracted such as the electron density, delocalization indices, and energy densities at the interatomic region (bond critical point, BCP) which have been employed previously for this aim. [40][41][42][43][44][45][46][47][48] The covalency was analyzed, on one hand, by changes in the concentration of the electron density at the BCP along with changes in the delocalization indices. On the other hand, energy densities show the polarization of the covalent bond by looking at the ratios between potential [V(r)] and kinetic [G(r)] energy densities, which for partial covalent bonds lie in between values of 1 and 2.…”
Section: Theoretical Methodsmentioning
confidence: 99%
“…Key elements within QTAIM were extracted such as the electron density, delocalization indices, and energy densities at the interatomic region (bond critical point, BCP) which have been employed previously for this aim. [33][34][35][36][37][38][39][40][41] The covalency was analyzed, on one hand, by changes in the concentration of the electron density at the BCP along with changes in the delocalization indices. On the other hand, energy densities show the polarization of the covalent bond by looking at the ratios between potential [V(r)] and kinetic [G(r)] energy densities, which for partial covalent bonds lie in between values of 1 and 2.…”
Section: Methodsmentioning
confidence: 99%