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Structure and Bonding in Some Gd(Ⅲ) Metal Complexes Studied by Three-Dimensional X-Ray Analysis and ^155Gd Mossbauer Spectroscopy
引用本文:王军虎,;Takahashi M asashi,;Kitazawa Takafumi,;TakedaMasuo. Structure and Bonding in Some Gd(Ⅲ) Metal Complexes Studied by Three-Dimensional X-Ray Analysis and ^155Gd Mossbauer Spectroscopy[J]. 中国稀土学报(英文版), 2007, 25(6): 647-653. DOI: 10.1016/S1002-0721(08)60001-0
作者姓名:王军虎,  Takahashi M asashi,  Kitazawa Takafumi,  TakedaMasuo
作者单位:[1]Dalian Institute of Chemical Physics, Chinese A cademy of Sciences, Dalian 116023, China; [2]Department of Chemistry, Faculty of Science, Toho University, 2-2-1 Miyama, Funabashi, Chiba 274-8510, Japan
基金项目:Project supported bythe Grants-in-Aid for Scientific Research from the Ministry of Education,Science andCulture,Japan and in Part by the Inter-University Joint Research Program for the CommonUse of JAERI(Japan Atomic Energy Research Institute)Facilities
摘    要:Some functional lanthanide metal complexes, such as acetylacetonato complexes, ethylenediaminetetraacetato complexes, were successfully applied for diagnostic technique. The authors are interested in investigating the structure and bonding in lanthanide and actinide metal complexes using 166Er, t55Gd, and 237Np Mtissbauer spectroscopies in connection with single-crystal and/or powder X-ray diffraction, making clear the differences on their structures as well as the differences in the participation of 4f and 5f orbitals in the chemical bonds. In this article, the crystal structures of two novel Gd(Ⅲ) acetylacetonato complexes, Gd(pta)3 · 2H2O (pta = 1,1,1 -trifluoro-5,5-dimethy 1-2,4-hexanedione) and Gd(bfa)3 · 2H2O (bfa = 1, 1, 1 -trifluoro-4-phenyl-2-4-butanedione) were reported. Though both of them were dihydrate and had distorted square antiprismatical structure, Gd(pta)3 · 2H2O crystallizes in the P 2 1/n (#14) monoclinic space group and its lattice parameters are a = 1.4141(6) nm, b = 1.0708(3) nm, c =2.2344(4) nm, β =952.4(2)°, and Gd(bfa)3· 2H2O crystallizes in P 212121 orthorhombic space group and its lattice parameters were a = 1.322 (1) nm, b = 2.295 (1) nm, c = 1. 0786(8) nm. In the meantime, the authors had finished a systematic investigation on the ^155Gd Mossbauer isomer shift (δ) of various Gd(Ⅲ) metal complexes having a different coordination number (C.N.) and different ratios coordinating oxygen to nitrogen. A tendency for the 6 value to decrease with an increase in the C.N, and the number of the nitrogen atom coordinating to Gd was confirmed. This indicated that the Gd-O and/or Gd-N bond in the investigated Gd(Ⅲ) metal complexes had a small covalent contribution, which was possible to be deduced from the O and/or N atoms of the lisands donating electrons to 6s, 5d, and 4f orbitals of Gd.

关 键 词:络合物化学  金属元素  光谱学  化学元素
收稿时间:2007-03-05
修稿时间:9 April 2007. 

Structure and Bonding in Some Gd(III) Metal Complexes Studied by Three-Dimensional X-Ray Analysis and Gd Mössbauer Spectroscopy
Wang , Takahashi Masashi, Kitazawa Takafumi,Takeda Masuo. Structure and Bonding in Some Gd(III) Metal Complexes Studied by Three-Dimensional X-Ray Analysis and Gd Mössbauer Spectroscopy[J]. Journal of Rare Earths, 2007, 25(6): 647-653. DOI: 10.1016/S1002-0721(08)60001-0
Authors:Wang    Takahashi Masashi   Kitazawa Takafumi  Takeda Masuo
Affiliation:

aDalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China

bDepartment of Chemistry, Faculty of Science, Toho University, 2-2-1 Miyama, Funabashi, Chiba 274-8510, Japan

Abstract:Some functional lanthanide metal complexes, such as acetylacetonato complexes, ethylenediaminetetraacetato complexes, were successfully applied for diagnostic technique. The authors are interested in investigating the structure and bonding in lanthanide and actinide metal complexes using 166Er, 155Gd, and 237Np Mössbauer spectroscopies in connection with single-crystal and/or powder X-ray diffraction, making clear the differences on their structures as well as the differences in the participation of 4f and 5f orbitals in the chemical bonds. In this article, the crystal structures of two novel Gd(III) acetylacetonato complexes, Gd(pta)3 · 2H2O (pta = 1, 1, 1-trifluoro-5, 5-dimethyl-2, 4-hexanedione) and Gd(bfa)3 · 2H2O (bfa = 1, 1, 1-trifluoro-4-phenyl-2-4-butanedione) were reported. Though both of them were dihydrate and had distorted square antiprismatical structure, Gd(pta)3 · 2H2O crystallizes in the P 21/n (#14) monoclinic space group and its lattice parameters are a =1.4141(6) nm, b = 1.0708(3) nm, c =2.2344(4) nm, β=95.24(2)°, and Gd(bfa)3 · 2H2O crystallizes in P212121 orthorhombic space group and its lattice parameters were a= 1.322(1) nm, b =2.295(1) nm, c = 1.0786(8) nm. In the meantime, the authors had finished a systematic investigation on the 155Gd Mössbauer isomer shift (δ) of various Gd(III) metal complexes having a different coordination number (C.N.) and different ratios coordinating oxygen to nitrogen. A tendency for the δ value to decrease with an increase in the C.N, and the number of the nitrogen atom coordinating to Gd was confirmed. This indicated that the Gd-O and/or Gd-N bond in the investigated Gd(III) metal complexes had a small covalent contribution, which was possible to be deduced from the O and/or N atoms of the ligands donating electrons to 6s, 5d, and 4f orbitals of Gd.
Keywords:Gd(III) metal complex   crystal structure   bonding   155Gd Mössbauer spectroscopy   three-dimensional X-ray analysis   covalent contribution   rare earths

CLC number: O641.4   O614.3

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