Search results for "GADOLINIUM"
showing 10 items of 303 documents
CCDC 270841: Experimental Crystal Structure Determination
2005
Related Article: J.-P.Costes, S.Shova, J.M.C.Juan, N.Suet|2005|Dalton Trans.||2830|doi:10.1039/b506102d
CCDC 1048590: Experimental Crystal Structure Determination
2015
Related Article: Carlos Meseguer, Silvia Titos-Padilla, Mikko M. Hänninen, R. Navarrete, A. J. Mota, Marco Evangelisti, José Ruiz, Enrique Colacio|2014|Inorg.Chem.|53|12092|doi:10.1021/ic501915j
CCDC 2044705: Experimental Crystal Structure Determination
2021
Related Article: Sergiu Calancea, Luca Carrella, Teodora Mocanu, Vladimir Sadohin, Mihai Raduca, Iacob Gutu, Julio C. Rocha, Maria G. F. Vaz, Eva Rentschler, Marius Andruh|2021|Eur.J.Inorg.Chem.|2021|567|doi:10.1002/ejic.202000954
CCDC 883031: Experimental Crystal Structure Determination
2013
Related Article: L.Canadillas-Delgado,J.Pasan,O.Fabelo,M.Julve,F.Lloret,C.Ruiz-Perez|2013|Polyhedron|52|321|doi:10.1016/j.poly.2012.09.016
CCDC 1457099: Experimental Crystal Structure Determination
2016
Related Article: Javier López-Cabrelles, Guillermo Mínguez Espallargas and Eugenio Coronado|2016|Polymers|8|171|doi:10.3390/polym8050171
CCDC 1457101: Experimental Crystal Structure Determination
2016
Related Article: Javier López-Cabrelles, Guillermo Mínguez Espallargas and Eugenio Coronado|2016|Polymers|8|171|doi:10.3390/polym8050171
CCDC 1477302: Experimental Crystal Structure Determination
2016
Related Article: C. Köhler, E. Rentschler|2016|Dalton Trans.|45|12854|doi:10.1039/C6DT02023B
CCDC 2019861: Experimental Crystal Structure Determination
2020
Related Article: Chengcheng Zhang, Xiufang Ma, Peipei Cen, Xiaoyong Jin, Jinhui Yang, Yi-Quan Zhang, Jesús Ferrando-Soria, Emilio Pardo, Xiangyu Liu|2020|Dalton Trans.|49|14123|doi:10.1039/D0DT02736G
Growth and characterization of GdxHg1−xSe crystals
2008
Abstract The growth of GdxHg1−xSe crystals by the vertical Bridgman method was studied in the composition range 0⩽x⩽0.1. The structural and electronic properties of GdxHg1−xSe crystals were investigated as a function of composition. It was found that an increase in gadolinium content up to x=0.01 results in a decrease of structural defects and an increase in electron mobility up to the maximum value of μ77≈2.8×105 cm2/V s. Structural defects start to increase at x>0.01, and the formation of Gd2Se3 amorphous phase takes place at x>0.03. On the base of the electron-spin resonance investigation, it was shown that the Gd incorporates into the HgSe host in Gd3+ charge state at the concentration …
Expanding the 3d-4f heterometallic chemistry of the (py)2CO and pyCOpyCOpy ligands: structural, magnetic and Mössbauer spectroscopic studies of two F…
2011
Complex [Fe(II)Gd(III){pyCO(OEt)pyCOH(OEt)py}(3)](ClO(4))(2) (1) crystallizes in the Cc space group and contains one hexacoordinate ferrous ion and one enneacoordinate Gd(III) ion. Complex [Fe(2)(II)Gd(III){pyCO(OEt)py}(4)(NO(3))(H(2)O)][Gd(NO(3))(5)](0.5)(ClO(4)) (2) crystallizes in the C2/c space group and contains two hexacoordinate ferrous ions and one octacoordinate Gd(III) ion. Both complexes have been prepared by the metal-assisted ethanolysis of ligands di-2,6-(2-pyridylcarbonyl)pyridine (pyCOpyCOpy, dpcp) and di-2-pyridyl ketone ((py)(2)CO, dpk), which exhibit similar structures. Mössbauer spectroscopic studies of 2 revealed the presence of two quadrupole-split doublets of equal in…