A new entry into molybdenum/tungsten sulfur chemistry: Synthesis and reactions of mononuclear sulfido complexes of pentamethylcyclopentadienyl-molybdenum(VI) and -tungsten(VI)

被引:135
作者
Kawaguchi, H [1 ]
Yamada, K [1 ]
Lang, JP [1 ]
Tatsumi, K [1 ]
机构
[1] NAGOYA UNIV, GRAD SCH SCI, DEPT CHEM, CHIKUSA KU, NAGOYA, AICHI 46401, JAPAN
关键词
D O I
10.1021/ja971725e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A series of mononuclear thio complexes of pentamethylcyclopentadienyl-molybdenum(VI) and -tungsten-(VT) have been synthesized via C-S bond-cleaving reactions of thiolates. Use of Li2S2 for sulfurization of Cp*MoCl4 resulted in the known dinuclear complex, anti-Cp*Mo-2(2)(S)(2)(mu-S)(2) (1), while the analogous reaction of Cp*WCl4 gave rise to anti-Cp*W-2(2)(S)(2)(mu-S)(2) (2) and (PPh4)[Cp*W(S)(3)] (3), the latter of which was isolated after the subsequent cation exchange reaction with PPh4Br. In contrast, the reaction of Cp*WCl4 with Li(2)edt (edt = SCH2CH2S) followed by treatment with PPh4Br generated 3 as the sole isolable product in high yield. A similar reaction between Cp*WCl4 and (LiSBu)-Bu-t afforded Cp*W(S)(2)((SBu)-Bu-t) (6), which turned out to be thermally unstable in solution and gradually degraded to 2. In these reactions of Cp*WCl4 with lithium thiolates, a facile C-S bond cleavage took place and the tungsten atom was oxidized from W(V) to W(VI). On the other hand, the Mo(IV) thiolate complexes, Cp*Mo((SBu)-Bu-t)(3) (4) and (PPh4)[Cp*Mo(edt)(2)] (5), were formed from the Cp*MoCl4/(LiSBu)-Bu-t and Cp*MoCl4/Li(2)edt/PPh4Br reaction systems. The complex 4 was readily oxidized by dry O-2 producing Cp*Mo(O)(2)((SBu)-Bu-t) (7) exclusively, while the reactions of 4 with NH2NMe2 and NH2NHPh occurred slowly to yield Cp*Mo(S)(2)((SBu)-Bu-t) (8). The hydrazines acted as oxidants, presumably by cleaving the N-N bond, and promoted the C-S bond rupture of tert-butyl thiolate and concomitant oxidation of molybdenum from Mo(IV) to Mo(VI). Elemental sulfur Ss and grey selenium also acted as oxidants in the reactions with 4, leading to a complex mixture of products. From the 4 + Ss reaction, the complexes 1, 8, and Cp*Mo(O)(S)((SBu)-Bu-t) (9) were produced, and the 4 + Se reaction lead to 8 and anti-Cp*Mo-2(2)(E)(2)(mu-E)(2) (10; E = S, Se). Finally treatment of 8 with Li2S2 and PPh4Br afforded (PPh4)[Cp*Mo(S)(3)] (11). We found that 11 was synthesized more easily by a one-pot reaction of 4, 1/4 equiv of S-8, and Li2S2 in THF. The trithio complexes, 3 and 11, reacted very cleanly with PhC=CPh generating (PPh4)[Cp*M(S)(S2C2Ph2)] (M = W (12), Mo (13)), respectively. A kinetic study of these reactions showed that they were first order in PhC=CPh and first order in 3 or 11 with appreciable negative entropies of activation and that the activation barrier was higher for the molybdenum reaction. The crystal structures of 3-8 and 11-13 were determined by the X-ray analysis.
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页码:10346 / 10358
页数:13
相关论文
共 83 条
[61]   SYNTHESIS OF A NEW TYPE OF METAL DITHIOLENE COMPLEX VIA AN INDUCED REACTION OF ACETYLENES WITH A RUTHENIUM SULFIDE [J].
RAUCHFUSS, TB ;
RODGERS, DPS ;
WILSON, SR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (11) :3114-3115
[63]   PREPARATION, STRUCTURE, AND COORDINATION CHEMISTRY OF MO[S-2,4,6-C6H2(CHME2)3]4 [J].
ROLAND, E ;
WALBORSKY, EC ;
DEWAN, JC ;
SCHROCK, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (20) :5795-5797
[64]  
SCHANNON RD, 1976, ACTA CRYSTALLOGR A, V32, P751
[65]   Crystal structure of DMSO reductase: Redox-linked changes in molybdopterin coordination [J].
Schindelin, H ;
Kisker, C ;
Hilton, J ;
Rajagopalan, KV ;
Rees, DC .
SCIENCE, 1996, 272 (5268) :1615-1621
[66]   VIBRATION-SPECTRA AND NORMAL COORDINATE ANALYSIS OF MOOSE3(2-), MOO2SE2(2-) AND WO2SE2(2-) [J].
SCHMIDT, KH ;
MULLER, A .
SPECTROCHIMICA ACTA PART A-MOLECULAR SPECTROSCOPY, 1972, A 28 (10) :1829-+
[67]   PREPARATION AND REACTIONS OF NIOBIUM(V) SULFIDE COMPLEXES [J].
SEELA, JL ;
HUFFMAN, JC ;
CHRISTOU, G .
POLYHEDRON, 1989, 8 (13-14) :1797-1799
[69]  
Stiefel E.I., 1996, Transition Metal-Sulfur Chemistry
[70]  
Stiefel E. I., 1993, MOLYBDENUM ENZYMES C