Trivalent lanthanide chalcogenolates:: Ln(SePh)3, Ln2(EPh)6, Ln4(SPh)12, and [Ln(EPh)3]n, (E=S, Se).: How metal, chalcogen, and solvent influence structure

被引:57
作者
Lee, J [1 ]
Freedman, D [1 ]
Melman, JH [1 ]
Brewer, M [1 ]
Sun, L [1 ]
Emge, TJ [1 ]
Long, FH [1 ]
Brennan, JG [1 ]
机构
[1] Rutgers State Univ, Dept Chem, Piscataway, NJ 08854 USA
关键词
D O I
10.1021/ic9716161
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
A series of trivalent lanthanide (Ln) benzenechalcogenolate (EPh, E = S,Se) complexes have been prepared and structurally characterized in an attempt to evaluate how metal size: chalcogen, and solvent influence structure and physical properties. The compounds [(py)(3)Ln(SPh)(3)](2) (Ln=Ho (1) and Tm (2)), [(py)(2)Sm(SPh)(3)](4) (3), [(THF)Sm(SPh)(3)](4n) (4), (THF)(3)Ln(SePh)(3)(Ln=Tm (5), Ho (6): Er (7)), [(py)(3)Sm(SePh)(3)](2) (8), and [(THF)(4)Ln(3)-(SePh)(9)](n) (Ln=Pr (9), Nd (10), and Sm (11)) were isolated and characterized by IR, NMR, and UV-visible spectroscopy. Compounds 2-4, 7, S, and 10 have also been characterized by low-temperature single-crystal X-ray diffraction. Three trends in structure are clear. First, the tendency to form oligomeric structures is found to increase with the size of the lanthanide ion. Second, thiolates bridge metal ions to form polynuclear structures more effectively than selenolates. Finally, pyridine displaces bridging chalcogenolates to form less extended structures more effectively than THF. Compounds 5-7 are molecular fac-octahedral complexes, compounds 1, 2, and 8 are bimetallic molecules with a pair of chalcogen atoms spanning the pentagonal bipyramidal metal centers, compound 3 is a tetrametallic structure with an alternating (3-2-3) number of mu(2)-thiolates spanning the linear assembly of four seven-coordinate Sm(III) ions, and compounds 4, 9, 10, and 11 are polymers with sets of three doubly bridging benzenechalcogenolates connecting adjacent metal-ions, Resonance:Raman spectroscopy indicates that the intense electronic absorption associated with Sm(III) chalcogenolate is a chalcogen-to-metal charge-transfer excitation. Compounds 1 and 2 decompose thermally to give Ln(2)S(3).
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页码:2512 / 2519
页数:8
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共 79 条
[1]  
ANDERSON DM, 1990, J CHEM SOC CHEM COMM, P284
[2]   ON THE STABILITY AND BONDING IN BIS(ETA-ARENE)LANTHANIDE COMPLEXES [J].
ANDERSON, DM ;
CLOKE, FGN ;
COX, PA ;
EDELSTEIN, N ;
GREEN, JC ;
PANG, T ;
SAMEH, AA ;
SHALIMOFF, G .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1989, (01) :53-55
[3]   LANTHANIDE-GROUP-12 METAL CHALCOGENOLATES - A VERSATILE CLASS OF COMPOUNDS [J].
BERARDINI, M ;
EMGE, TJ ;
BRENNAN, JG .
INORGANIC CHEMISTRY, 1995, 34 (21) :5327-5334
[4]   Early-and late-lanthanide pyridinethiolates: Synthesis, redox stability, and structure [J].
Berardini, M ;
Lee, JS ;
Freedman, D ;
Lee, J ;
Emge, TJ ;
Brennan, JG .
INORGANIC CHEMISTRY, 1997, 36 (25) :5772-5776
[5]   HETEROMETALLIC RARE-EARTH GROUP-II METAL CHALCOGENOLATE CLUSTERS [J].
BERARDINI, M ;
EMGE, T ;
BRENNAN, JG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (15) :6941-6942
[6]   A TRIVALENT RARE-EARTH COMPLEX OF THE HEAVIER CHALCOGENOLATES - SYNTHESIS AND STRUCTURAL CHARACTERIZATION OF [(PY)2 YB(SEC6H5)2(MU-SEC6H5)2LI(PY)2] (PY = PYRIDINE) [J].
BERARDINI, M ;
EMGE, TJ ;
BRENNAN, JG .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1993, (20) :1537-1538
[7]   ONE-DIMENSIONAL COORDINATION POLYMERS - [((PYRIDINE)2EU(MU-SEC6H5)2)4]INFINITY AND [(THF)3EU(MU-SEC6H5)2]INFINITY [J].
BERARDINI, M ;
EMGE, T ;
BRENNAN, JG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (18) :8501-8502
[8]   EUROPIUM PYRIDINETHIOLATES - SYNTHESIS, STRUCTURE, AND THERMOLYSIS [J].
BERARDINI, M ;
BRENNAN, J .
INORGANIC CHEMISTRY, 1995, 34 (24) :6179-6185
[9]   LUMINESCENT MATERIALS - IS THERE STILL NEWS [J].
BLASSE, G .
JOURNAL OF ALLOYS AND COMPOUNDS, 1995, 225 (1-2) :529-533
[10]   SYNTHESIS OF BIS(ETA-1,3,5-TRI-T-BUTYLBENZENE) SANDWICH COMPLEXES OF YTTRIUM(0) AND GADOLINIUM(0) - THE X-RAY CRYSTAL-STRUCTURE OF THE 1ST AUTHENTIC LANTHANIDE(0) COMPLEX, [GD(ETA-BUT3C6H3)2] [J].
BRENNAN, JG ;
CLOKE, FGN ;
SAMEH, AA ;
ZALKIN, A .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1987, (21) :1668-1669